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Question 1
Correct
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The antenatal ultrasound (US) performed on a baby small for gestational age, reveals a midline abdominal wall defect with a membranous sac enclosing the protruding intestinal contents. Is it advantageous to offer amniocentesis for additional genetic investigations, despite the potential risks involved?
Your Answer: Early diagnosis of any genetic conditions associated with this defect
Explanation:BWS can also cause gigantism, which may explain the macrosomia observed in this case. Genetic and chromosomal abnormalities are commonly associated with omphalocoele, and genetic studies are conducted to detect any such abnormalities early on, not just Down’s syndrome.
The US findings indicate the presence of an omphalocoele, not a gastroschisis, which is an abdominal wall defect without a membranous sac covering, usually located to the right of a normal umbilical cord insertion site. As such, genetic studies are not used to diagnose either defect, and this option is incorrect.
Omphalocoele can be diagnosed without genetic studies, but if the membranous sac ruptures in utero, there may be some uncertainty in the diagnosis. In such cases, genetic studies can help confirm the diagnosis, given the high incidence of associated genetic abnormalities with omphalocoele.
While foetuses with omphalocoele are more likely to have associated structural defects, genetic studies are not useful in identifying these. An echocardiogram would be a more effective means of detecting any other structural defects.
Gastroschisis and Exomphalos: Congenital Visceral Malformations
Gastroschisis and exomphalos are both types of congenital visceral malformations. Gastroschisis is a condition where there is a defect in the anterior abdominal wall, located just beside the umbilical cord. On the other hand, exomphalos, also known as omphalocoele, is a condition where the abdominal contents protrude through the anterior abdominal wall, but are covered by an amniotic sac formed by amniotic membrane and peritoneum.
In terms of management, vaginal delivery may be attempted for gastroschisis, and newborns should be taken to the operating room as soon as possible after delivery, ideally within four hours. For exomphalos, a caesarean section is indicated to reduce the risk of sac rupture. A staged repair may be undertaken as primary closure may be difficult due to lack of space or high intra-abdominal pressure. If this occurs, the sac is allowed to granulate and epithelialize over the coming weeks or months, forming a shell. As the infant grows, a point will be reached when the sac contents can fit within the abdominal cavity. At this point, the shell will be removed, and the abdomen closed.
Overall, both gastroschisis and exomphalos require careful management and monitoring to ensure the best possible outcomes for the newborn.
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This question is part of the following fields:
- Gastrointestinal System
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Question 2
Correct
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During a block dissection of the thigh, the sartorius muscle is identified. What is the nerve supply to this muscle?
Your Answer: Anterior division of the femoral nerve
Explanation:The superficial femoral nerve primarily provides cutaneous branches, but it also innervates the sartorius muscle.
The Sartorius Muscle: Anatomy and Function
The sartorius muscle is the longest strap muscle in the human body and is located in the anterior compartment of the thigh. It is the most superficial muscle in this region and has a unique origin and insertion. The muscle originates from the anterior superior iliac spine and inserts on the medial surface of the body of the tibia, anterior to the gracilis and semitendinosus muscles. The sartorius muscle is innervated by the femoral nerve (L2,3).
The primary action of the sartorius muscle is to flex the hip and knee, while also slightly abducting the thigh and rotating it laterally. It also assists with medial rotation of the tibia on the femur, which is important for movements such as crossing one leg over the other. The middle third of the muscle, along with its strong underlying fascia, forms the roof of the adductor canal. This canal contains important structures such as the femoral vessels, the saphenous nerve, and the nerve to vastus medialis.
In summary, the sartorius muscle is a unique muscle in the anterior compartment of the thigh that plays an important role in hip and knee flexion, thigh abduction, and lateral rotation. Its location and relationship to the adductor canal make it an important landmark for surgical procedures in the thigh region.
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This question is part of the following fields:
- Musculoskeletal System And Skin
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Question 3
Incorrect
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A 47-year-old man is given a significant amount of whole blood transfusion that is three weeks old. How will the blood handle oxygen?
Your Answer: Its affinity for oxygen is unchanged
Correct Answer: It will have an increased affinity for oxygen
Explanation:Blood that has been stored has a decreased level of 2,3 DPG, resulting in a greater attraction to oxygen and a reduced capacity to release it at tissues that are undergoing metabolism.
Oxygen Transport and Factors Affecting Haemoglobin Saturation
Oxygen transport in the body is mainly carried out by erythrocytes, with only 1% of oxygen being transported as a solution due to its limited solubility. The amount of oxygen transported depends on the concentration of haemoglobin and its degree of saturation. Haemoglobin is a globular protein composed of four subunits, with two alpha and two beta subunits forming globin. Haem, which surrounds an iron atom in its ferrous state, can form two additional bonds with oxygen and a polypeptide chain. The oxygenation of haemoglobin is a reversible reaction, and the molecular shape of haemoglobin facilitates the binding of subsequent oxygen molecules.
The oxygen dissociation curve describes the relationship between the percentage of saturated haemoglobin and partial pressure of oxygen in the blood, and it is not affected by haemoglobin concentration. The curve can be shifted to the right or left by various factors. Chronic anaemia, for example, causes an increase in 2,3 DPG levels, which shifts the curve to the right, resulting in lower oxygen delivery. The Haldane effect causes a shift to the left, resulting in decreased oxygen delivery to tissues, while the Bohr effect causes a shift to the right, resulting in enhanced oxygen delivery to tissues. Factors that shift the curve to the left include low levels of H+, pCO2, 2,3-DPG, and temperature, as well as the presence of HbF, methaemoglobin, and carboxyhaemoglobin. Factors that shift the curve to the right include raised levels of H+, pCO2, and 2,3-DPG, as well as increased temperature.
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This question is part of the following fields:
- Haematology And Oncology
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Question 4
Incorrect
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A 65-year-old woman visits the rheumatology clinic complaining of fatigue that has lasted for 6 weeks. She reports sleeping more than usual and feeling easily tired while walking her dog. The patient has a medical history of rheumatoid arthritis and is currently taking methotrexate. She smokes 2-3 cigarettes per day and drinks half a bottle of wine per week.
The following investigations are ordered:
- Haemoglobin: 88 g/L (normal range: 115 - 160)
- Mean cell volume (MCV): 105 fL (normal range: 80 - 100)
What is the most probable cause of this patient's symptoms?Your Answer: Anaemia of chronic disease
Correct Answer: Folate deficiency
Explanation:Methotrexate treatment can lead to megaloblastic macrocytic anemia due to a deficiency of folate.
The patient’s low hemoglobin and high MCV indicate macrocytic anemia, which can be caused by various factors such as alcohol abuse, hypothyroidism, aplastic anemia, and megaloblastic anemia due to a deficiency of vitamin B12 and/or folate. In this case, the patient has a history of rheumatoid arthritis and takes methotrexate weekly, which inhibits dihydrofolate reductase and causes a deficiency of folate. Therefore, folate deficiency is the most probable cause of the patient’s anemia.
Alcohol excess is an incorrect option as it usually requires larger quantities of alcohol to cause macrocytic anemia.
Anaemia of chronic disease is an incorrect option as it typically results in normocytic or microcytic anemia, not macrocytic anemia.
Iron deficiency anemia is an incorrect option as it causes microcytic anemia, and the MCV value would be lower than expected.
Understanding Macrocytic Anaemia
Macrocytic anaemia is a type of anaemia that can be classified into two categories: megaloblastic and normoblastic. Megaloblastic anaemia is caused by a deficiency in vitamin B12 or folate, which leads to the production of abnormally large red blood cells in the bone marrow. This type of anaemia can also be caused by certain medications, alcohol, liver disease, hypothyroidism, pregnancy, and myelodysplasia.
On the other hand, normoblastic anaemia is caused by an increase in the number of immature red blood cells, known as reticulocytes, in the bone marrow. This can occur as a result of certain medications, such as methotrexate, or in response to other underlying medical conditions.
It is important to identify the underlying cause of macrocytic anaemia in order to provide appropriate treatment. This may involve addressing any nutritional deficiencies, managing underlying medical conditions, or adjusting medications. With proper management, most cases of macrocytic anaemia can be successfully treated.
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This question is part of the following fields:
- Haematology And Oncology
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Question 5
Incorrect
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Which of the following is not a tumor suppressor gene?
Your Answer: APC
Correct Answer: myc
Explanation:Understanding Tumour Suppressor Genes
Tumour suppressor genes are responsible for controlling the cell cycle and preventing the development of cancer. When these genes lose their function, the risk of cancer increases. It is important to note that both alleles of the gene must be mutated before cancer can occur. Examples of tumour suppressor genes include p53, APC, BRCA1 & BRCA2, NF1, Rb, WT1, and MTS-1. Each of these genes is associated with specific types of cancer, and their loss of function can lead to an increased risk of developing these cancers.
On the other hand, oncogenes are genes that, when they gain function, can also increase the risk of cancer. Unlike tumour suppressor genes, oncogenes promote cell growth and division, leading to uncontrolled cell growth and the development of cancer. Understanding the role of both tumour suppressor genes and oncogenes is crucial in the development of cancer treatments and prevention strategies. By identifying and targeting these genes, researchers can work towards developing more effective treatments for cancer.
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This question is part of the following fields:
- General Principles
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Question 6
Incorrect
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A 70-year-old male is referred to a haematologist for an elevated white blood cell count and an increased quantity of mature myeloid cells on his blood film. The diagnosis of chronic myeloid leukaemia is confirmed with the presence of an oncogene. He is promptly treated with chemotherapy and a tyrosine kinase inhibitor. What is the oncogene associated with chronic myeloid leukaemia?
Your Answer: n-MYC
Correct Answer: ABL
Explanation:Chronic myeloid leukaemia is often associated with the oncogene ABL, which is frequently amplified following the translocation t:(9;22), also known as the Philadelphia chromosome. Other oncogenes commonly found in different types of cancer include n-MYC in neuroblastoma, c-MYC in Burkitt’s lymphoma, and BCL-2 in follicular lymphoma.
Oncogenes are genes that promote cancer and are derived from normal genes called proto-oncogenes. Proto-oncogenes play a crucial role in cellular growth and differentiation. However, a gain of function in oncogenes increases the risk of cancer. Only one mutated copy of the gene is needed for cancer to occur, making it a dominant effect. Oncogenes are responsible for up to 20% of human cancers and can become oncogenes through mutation, chromosomal translocation, or increased protein expression.
In contrast, tumor suppressor genes restrict or repress cellular proliferation in normal cells. Their inactivation through mutation or germ line incorporation is implicated in various cancers, including renal, colonic, breast, and bladder cancer. Tumor suppressor genes, such as p53, offer protection by causing apoptosis of damaged cells. Other well-known genes include BRCA1 and BRCA2. Loss of function in tumor suppressor genes results in an increased risk of cancer, while gain of function in oncogenes increases the risk of cancer.
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This question is part of the following fields:
- General Principles
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Question 7
Correct
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A 20-year-old woman comes to the clinic complaining of chronic fatigue and frequent infections, such as pneumonia and diarrhea. Upon examination, it is discovered that she has abnormally high levels of IgM, but low levels of other immunoglobulin classes. This indicates a potential immune disorder that affects the ability of B cells to switch classes of antibodies, resulting in elevated levels of IgM but inadequate levels of other types.
What is the accurate statement regarding this mechanism?Your Answer: The constant region of the antibody heavy chain changes, but the variable region of the heavy chain stays the same
Explanation:Immunoglobulin class switching is a process that involves altering the isotype of an antibody by changing only the constant region of the heavy chain. This change does not affect the antigen affinity, which is determined by the variable region of the immunoglobulin. Although both constant and variable regions can undergo changes at different stages, the variable region is not involved in class switching. It is important to note that abnormalities in B cell class switching can lead to hypergammaglobulinaemia, an uncommon immune disorder affecting antibody production.
Immunoglobulins, also known as antibodies, are proteins produced by the immune system to help fight off infections and diseases. There are five types of immunoglobulins found in the body, each with their own unique characteristics.
IgG is the most abundant type of immunoglobulin in blood serum and plays a crucial role in enhancing phagocytosis of bacteria and viruses. It also fixes complement and can be passed to the fetal circulation.
IgA is the most commonly produced immunoglobulin in the body and is found in the secretions of digestive, respiratory, and urogenital tracts and systems. It provides localized protection on mucous membranes and is transported across the interior of the cell via transcytosis.
IgM is the first immunoglobulin to be secreted in response to an infection and fixes complement, but does not pass to the fetal circulation. It is also responsible for producing anti-A, B blood antibodies.
IgD’s role in the immune system is largely unknown, but it is involved in the activation of B cells.
IgE is the least abundant type of immunoglobulin in blood serum and is responsible for mediating type 1 hypersensitivity reactions. It provides immunity to parasites such as helminths and binds to Fc receptors found on the surface of mast cells and basophils.
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This question is part of the following fields:
- General Principles
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Question 8
Incorrect
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Your nursing student has prepared an information leaflet for elderly patients being started on cephalosporin antibiotics. While proofreading the information contained in the leaflet, you note that the student has mixed up the mechanism of actions of cephalosporins with aminoglycosides.
You call the student and notify her of the error.
Select the correct mechanism of action that should be mentioned in the patient leaflet.Your Answer: Inhibits DNA synthesis
Correct Answer: Inhibition of peptidoglycan cross-linking
Explanation:The mechanism of action of various antibiotics includes inhibition of peptidoglycan cross-linking, RNA synthesis, nucleic acid synthesis, and ribosome subunit binding. Cephalosporins and beta-lactams disrupt the peptidoglycan layer of bacterial cell walls by inhibiting cross-linking through competitive inhibition on PCB. Aminoglycosides bind to the 30s ribosome subunit, leading to mRNA misreading and abnormal peptide synthesis, resulting in cell death. Quinolones, like ciprofloxacin, inhibit DNA synthesis by targeting DNA gyrase. Rifampicin is most effective against intracellular phagocytized Staphylococcus aureus in macrophages by inhibiting RNA synthesis. Metronidazole disrupts microbial cell DNA by inhibiting nucleic acid synthesis.
Understanding Cephalosporins and their Mechanism of Resistance
Cephalosporins are a type of antibiotic that belongs to the β-lactam family. They are known for their bactericidal properties and are less susceptible to penicillinases than penicillins. These antibiotics work by disrupting the synthesis of bacterial cell walls, specifically by inhibiting peptidoglycan cross-linking.
One of the mechanisms of resistance to cephalosporins is changes to penicillin-binding-proteins (PBPs). PBPs are types of transpeptidases that are produced by bacteria to cross-link peptidoglycan chains and form rigid cell walls. When these proteins are altered, they become less susceptible to the effects of cephalosporins, making the antibiotic less effective in treating bacterial infections. Understanding the mechanism of resistance to cephalosporins is crucial in developing new antibiotics and improving treatment options for bacterial infections.
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This question is part of the following fields:
- General Principles
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Question 9
Incorrect
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A 12-day-old infant named Max is brought to the paediatric assessment unit due to yellowing of the skin that started 3 days ago. Max is currently in a bright and alert state and has not experienced any fever. The baby has been passing urine and stool normally, and the mother has not noticed any changes in this regard.
Apart from the jaundice, the mother has no other concerns, and Max has been thriving since birth. Max was born at term, is breastfed, and there are no other children in the house.
Hb: 140 g/L Male: (135-180) Female: (115 - 160)
Bilirubin: 30 µmol/L (3 - 17)
Upon further testing, it is revealed that Max's unconjugated bilirubin levels are 26 µmol/L. Based on these findings, what is the most likely cause of the jaundice in Max's case?Your Answer: Common bile duct obstruction
Correct Answer: Hepatic immaturity
Explanation:Neonatal jaundice caused by physiological factors is a result of the liver’s immaturity and the breakdown of fetal hemoglobin. To determine the cause of jaundice, both clinical symptoms and laboratory findings are crucial. In this case, the presence of isolated unconjugated hyperbilirubinemia without any clinical signs is indicative of physiological jaundice. This type of jaundice is common in the first few weeks of life and is caused by the immaturity of the liver and increased breakdown of hemoglobin. The fact that the baby is being breastfed also supports this diagnosis. Obstructive jaundice, on the other hand, would present with an obstructive picture and an elevated conjugated bilirubin level, which is not the case here. In MCQs, the history often provides clues, such as pale stools and dark urine.
Understanding Jaundice in Newborns
Jaundice is a common condition in newborns that occurs due to the accumulation of bilirubin in the blood. The severity and duration of jaundice can vary depending on the cause and age of the baby. Jaundice in the first 24 hours is always considered pathological and can be caused by conditions such as rhesus haemolytic disease, ABO haemolytic disease, hereditary spherocytosis, and glucose-6-phosphodehydrogenase deficiency.
Jaundice in the neonate from 2-14 days is usually physiological and affects up to 40% of babies. It is more commonly seen in breastfed babies and is due to a combination of factors such as more red blood cells, fragile red blood cells, and less developed liver function. However, if jaundice persists after 14 days (21 days if premature), a prolonged jaundice screen is performed to identify the cause. This includes tests for conjugated and unconjugated bilirubin, direct antiglobulin test, TFTs, FBC and blood film, urine for MC&S and reducing sugars, and U&Es and LFTs.
Prolonged jaundice can be caused by conditions such as biliary atresia, hypothyroidism, galactosaemia, urinary tract infection, breast milk jaundice, prematurity, and congenital infections like CMV and toxoplasmosis. Breast milk jaundice is more common in breastfed babies and is thought to be due to high concentrations of beta-glucuronidase, which increases the intestinal absorption of unconjugated bilirubin. It is important to identify the cause of prolonged jaundice as some conditions like biliary atresia require urgent surgical intervention, while others like hypothyroidism can lead to developmental delays if left untreated.
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This question is part of the following fields:
- General Principles
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Question 10
Correct
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A 79-year-old woman is admitted after a fall resulting in a wrist fracture. After diagnosis, she is prescribed a medication to increase bone density in accordance with NICE guidance. What is the mechanism of action of this drug?
Your Answer: Inhibits osteoclasts
Explanation:Bisphosphonates work by inhibiting osteoclasts, the cells responsible for bone resorption. Therefore, NICE recommends discharging patients on bisphosphonates after fragility fractures without the need for a DEXA scan. While vitamin D and calcium supplementation increase calcium availability to bone, bisphosphonates are the first-line treatment for fragility fractures. Inhibiting osteoblasts would decrease bone density, so promoting osteoclasts would lead to increased bone resorption, which is incorrect.
Bisphosphonates: Uses, Adverse Effects, and Patient Counselling
Bisphosphonates are drugs that mimic the action of pyrophosphate, a molecule that helps prevent bone demineralization. They work by inhibiting osteoclasts, the cells responsible for breaking down bone tissue. Bisphosphonates are commonly used to prevent and treat osteoporosis, hypercalcemia, Paget’s disease, and pain from bone metastases.
However, bisphosphonates can cause adverse effects such as oesophageal reactions, osteonecrosis of the jaw, and an increased risk of atypical stress fractures of the proximal femoral shaft in patients taking alendronate. Patients may also experience an acute phase response, which includes fever, myalgia, and arthralgia following administration. Hypocalcemia may also occur due to reduced calcium efflux from bone, but this is usually clinically unimportant.
To minimize the risk of adverse effects, patients taking oral bisphosphonates should swallow the tablets whole with plenty of water while sitting or standing. They should take the medication on an empty stomach at least 30 minutes before breakfast or another oral medication and remain upright for at least 30 minutes after taking the tablet. Hypocalcemia and vitamin D deficiency should be corrected before starting bisphosphonate treatment. However, calcium supplements should only be prescribed if dietary intake is inadequate when starting bisphosphonate treatment for osteoporosis. Vitamin D supplements are usually given.
The duration of bisphosphonate treatment varies depending on the level of risk. Some experts recommend stopping bisphosphonates after five years if the patient is under 75 years old, has a femoral neck T-score of more than -2.5, and is at low risk according to FRAX/NOGG.
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This question is part of the following fields:
- Musculoskeletal System And Skin
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Question 11
Correct
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An Afro-Caribbean woman in her 40s visits her doctor with complaints of exhaustion, bone ache, and hair loss. The doctor conducts some blood tests and discovers that the patient is suffering from hypocalcaemia. To treat the condition, the doctor prescribes vitamin D supplements. After a few weeks, the patient reports feeling much better, and her calcium levels have returned to normal.
What is the primary process responsible for the increase in the patient's serum calcium levels?Your Answer: An increase in calcium absorption from the gut
Explanation:The primary way in which vitamin D increases serum calcium levels is by enhancing its absorption through the small intestine. This is achieved through the promotion of transcellular calcium absorption via the apical calcium receptor and TRPV6, as well as the intracellular movement of calcium using calbindin and the basolateral transfer of calcium out of cells via PMCA1b. While vitamin D also promotes calcium reabsorption in the kidneys and bone demineralisation, these mechanisms are not as significant as its effect on gut absorption. Vitamin D deficiency can lead to hypocalcaemia initially, but may eventually result in normal serum calcium levels or even hypercalcaemia due to secondary hyperparathyroidism. Patients of Afro-Caribbean and South Asian descent are at a higher risk of vitamin D deficiency, and clinicians should therefore consider this possibility more readily in these populations.
Understanding Vitamin D
Vitamin D is a type of vitamin that is soluble in fat and is essential for the metabolism of calcium and phosphate in the body. It is converted into calcifediol in the liver and then into calcitriol, which is the active form of vitamin D, in the kidneys. Vitamin D can be obtained from two sources: vitamin D2, which is found in plants, and vitamin D3, which is present in dairy products and can also be synthesized by the skin when exposed to sunlight.
The primary function of vitamin D is to increase the levels of calcium and phosphate in the blood. It achieves this by increasing the absorption of calcium in the gut and the reabsorption of calcium in the kidneys. Vitamin D also stimulates osteoclastic activity, which is essential for bone growth and remodeling. Additionally, it increases the reabsorption of phosphate in the kidneys.
A deficiency in vitamin D can lead to two conditions: rickets in children and osteomalacia in adults. Rickets is characterized by soft and weak bones, while osteomalacia is a condition where the bones become weak and brittle. Therefore, it is crucial to ensure that the body receives an adequate amount of vitamin D to maintain healthy bones and overall health.
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This question is part of the following fields:
- General Principles
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Question 12
Incorrect
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What is a good dietary source of vitamin A?
Your Answer: White cabbage
Correct Answer: Liver
Explanation:The Importance of Vitamin A in Our Body
Vitamin A is an essential nutrient that can be found in various sources such as liver, fish liver oils, dark green leafy vegetables, carrots, and mangoes. It can also be added to certain foods like cereals and margarines. This nutrient plays a crucial role in our body as it is required for vision, growth and development of tissues, regulation of gene transcription, and synthesis of hydrophobic glycoproteins and parts of the protein kinase enzyme pathways.
One of the primary functions of vitamin A is to support our vision. It is a component of rhodopsin, a pigment that is necessary for the rod cells of the retina. Without vitamin A, our eyesight can be compromised, leading to various eye problems. Additionally, vitamin A is also essential for the growth and development of many types of tissues in our body. It helps in maintaining healthy skin, teeth, and bones.
Moreover, vitamin A is involved in regulating gene transcription, which is the process of converting DNA into RNA. This nutrient also plays a role in the synthesis of hydrophobic glycoproteins and parts of the protein kinase enzyme pathways. These processes are essential for the proper functioning of our body.
In conclusion, vitamin A is a vital nutrient that our body needs to function correctly. It is essential for our vision, growth and development of tissues, regulation of gene transcription, and synthesis of hydrophobic glycoproteins and parts of the protein kinase enzyme pathways. Therefore, it is crucial to include vitamin A-rich foods in our diet or take supplements if necessary.
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This question is part of the following fields:
- Basic Sciences
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Question 13
Correct
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A 57-year-old man is prescribed warfarin for his atrial fibrillation. The doctor explains that this is to reduce his risk of a stroke, by preventing clots from forming in his heart. The same man is admitted to the hospital some months later for an upper gastrointestinal bleed, and the medical team seeks to reduce his bleeding by giving him vitamin K.
What is the mechanism of action of this reversal agent?Your Answer: As cofactor in the carboxylation of clotting factors II, VII, IX and X
Explanation:Vitamin K plays a crucial role as a cofactor in the carboxylation of clotting factors II, VII, IX, and X, which are essential in secondary haemostasis. In cases where warfarin has reduced the vitamin K dependent carboxylation of these factors, vitamin K can be used as a reversal agent.
It is important to note that vitamin K is not involved in the acetylation of clotting factors II, VII, IX, and X, which are vitamin K dependent. Additionally, factors V and VIII are not vitamin K dependent clotting factors and do not undergo carboxylation or acetylation involving vitamin K.
Furthermore, vitamin K does not have any role in primary haemostasis, which involves platelet activation and adherence to the endothelium. Its involvement is limited to the clotting cascade and activation of fibrin in secondary haemostasis.
Understanding Vitamin K
Vitamin K is a type of fat-soluble vitamin that plays a crucial role in the carboxylation of clotting factors such as II, VII, IX, and X. This vitamin acts as a cofactor in the process, which is essential for blood clotting. In clinical settings, vitamin K is used to reverse the effects of warfarinisation, a process that inhibits blood clotting. However, it may take up to four hours for the INR to change after administering vitamin K.
Vitamin K deficiency can occur in conditions that affect fat absorption since it is a fat-soluble vitamin. Additionally, prolonged use of broad-spectrum antibiotics can eliminate gut flora, leading to a deficiency in vitamin K. It is essential to maintain adequate levels of vitamin K to ensure proper blood clotting and prevent bleeding disorders.
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This question is part of the following fields:
- General Principles
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Question 14
Incorrect
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What is the main role of cholecystokinin?
Your Answer: Increases gastric emptying
Correct Answer: Triggers gallbladder contraction
Explanation:Hormones and their Functions in Digestion
Cholecystokinin is a hormone that helps in digestion by neutralizing the partially digested food. It does this by stimulating the gallbladder to contract and the pancreas to release alkaline pancreatic fluid. This fluid helps to neutralize the acidic food and aids in the digestion process.
Gastrin is another hormone that plays a crucial role in digestion. It increases the production of stomach acid and also increases the rate of gastric emptying. This helps to break down the food more efficiently and move it through the digestive system.
Secretin is a hormone that reduces the production of stomach acid. It is released by the small intestine in response to the acidic food passing through it. This helps to prevent the stomach from becoming too acidic and causing discomfort.
Leptin is a hormone that helps to regulate appetite. It is produced by fat cells and acts on the brain to suppress appetite. This helps to maintain a healthy weight and prevent overeating.
In summary, hormones play a vital role in digestion by regulating the production of stomach acid, neutralizing acidic food, and suppressing appetite.
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This question is part of the following fields:
- Clinical Sciences
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Question 15
Incorrect
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A 58-year-old man has an out-of-hospital cardiac arrest and is pronounced dead at the scene. A post-mortem examination is carried out to determine the cause of death, which demonstrates 90% stenosis of the left anterior descending artery.
What is the ultimate stage in the development of this stenosis?Your Answer: Fatty infiltration of the subendothelial space by low-density lipoprotein (LDL)
Correct Answer: Smooth muscle proliferation and migration from the tunica media into the intima
Explanation:Understanding Atherosclerosis and its Complications
Atherosclerosis is a complex process that occurs over several years. It begins with endothelial dysfunction triggered by factors such as smoking, hypertension, and hyperglycemia. This leads to changes in the endothelium, including inflammation, oxidation, proliferation, and reduced nitric oxide bioavailability. As a result, low-density lipoprotein (LDL) particles infiltrate the subendothelial space, and monocytes migrate from the blood and differentiate into macrophages. These macrophages then phagocytose oxidized LDL, slowly turning into large ‘foam cells’. Smooth muscle proliferation and migration from the tunica media into the intima result in the formation of a fibrous capsule covering the fatty plaque.
Once a plaque has formed, it can cause several complications. For example, it can form a physical blockage in the lumen of the coronary artery, leading to reduced blood flow and oxygen to the myocardium, resulting in angina. Alternatively, the plaque may rupture, potentially causing a complete occlusion of the coronary artery and resulting in a myocardial infarction. It is essential to understand the process of atherosclerosis and its complications to prevent and manage cardiovascular diseases effectively.
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This question is part of the following fields:
- Cardiovascular System
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Question 16
Correct
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You are studying enzyme-kinetics before a crucial exam and come across the Line-Weaver Burk plot of the Michaelis-Menten model. You need to be familiar with all the abbreviations and their meanings.
What does 'Km' signify on the Line-Weaver Burk plot?Your Answer: Concentration of substrate that leads to half-maximal velocity
Explanation:The concentration of substrate that results in half of the maximum velocity is known as Km. The other options provided are not accurate. Vmax pertains to the highest rate achievable in the catalyzed reaction.
Enzyme kinetics is the study of how enzymes catalyze chemical reactions. Catalysts increase the rate of a chemical reaction without being consumed or altering the position of equilibrium between substrates and products. Enzyme-catalyzed reactions display saturation kinetics, meaning that there is not a linear response to increasing levels of substrate. Vmax is the maximum rate of the catalyzed reaction, while Km is the concentration of substrate that leads to half-maximal velocity. Enzymes with a low Km have a high affinity for their substrate. The Michaelis-Menten model of a single substrate reaction demonstrates the saturation curve for an enzyme, showing the relationship between substrate concentration and reaction rate. Linear plots of the Michaelis-Menten model are used to estimate Vmax. The Lineweaver-Burk plot of kinetic data shows how the y-intercept equals 1/Vmax, and as the y-intercept increases, Vmax decreases. There are three types of inhibitors: competitive, non-competitive, and uncompetitive. Each type has a different effect on Vmax and Km. Competitive inhibitors compete with the substrate for the enzyme’s active binding site, while non-competitive inhibitors bind outside the enzyme’s active binding site. Uncompetitive inhibitors are rare and bind to the enzyme, enhancing the binding of substrate.
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This question is part of the following fields:
- General Principles
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Question 17
Incorrect
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Which type of epithelium lines the lumenal surface of the typical esophagus?
Your Answer: Ciliated columnar epithelium
Correct Answer: Non keratinised stratified squamous epithelium
Explanation:The lining of the oesophagus is composed of stratified squamous epithelium that is not keratinised. Metaplastic processes in reflux can lead to the transformation of this epithelium into glandular type epithelium.
Anatomy of the Oesophagus
The oesophagus is a muscular tube that is approximately 25 cm long and starts at the C6 vertebrae, pierces the diaphragm at T10, and ends at T11. It is lined with non-keratinized stratified squamous epithelium and has constrictions at various distances from the incisors, including the cricoid cartilage at 15cm, the arch of the aorta at 22.5cm, the left principal bronchus at 27cm, and the diaphragmatic hiatus at 40cm.
The oesophagus is surrounded by various structures, including the trachea to T4, the recurrent laryngeal nerve, the left bronchus and left atrium, and the diaphragm anteriorly. Posteriorly, it is related to the thoracic duct to the left at T5, the hemiazygos to the left at T8, the descending aorta, and the first two intercostal branches of the aorta. The arterial, venous, and lymphatic drainage of the oesophagus varies depending on the location, with the upper third being supplied by the inferior thyroid artery and drained by the deep cervical lymphatics, the mid-third being supplied by aortic branches and drained by azygos branches and mediastinal lymphatics, and the lower third being supplied by the left gastric artery and drained by posterior mediastinal and coeliac veins and gastric lymphatics.
The nerve supply of the oesophagus also varies, with the upper half being supplied by the recurrent laryngeal nerve and the lower half being supplied by the oesophageal plexus of the vagus nerve. The muscularis externa of the oesophagus is composed of both smooth and striated muscle, with the composition varying depending on the location.
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This question is part of the following fields:
- Gastrointestinal System
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Question 18
Incorrect
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A 32-year-old man presents to the emergency department complaining of abdominal pain and persistent diarrhoea. He recently returned from a trip to Brazil and noticed the symptoms a few days after his return. He initially thought it was food-related, but he also developed an urticarial rash on his abdomen and papulovesicular lesions on the soles of his feet. Stool cultures are ordered to determine the most likely causative agent.
What is the probable cause of the patient's symptoms?Your Answer: Escherichia coli
Correct Answer: Strongyloides stercoralis
Explanation:The patient in the vignette is likely infected with Strongyloides stercoralis, as he presents with diarrhoea and abdominal pain, along with papulovesicular lesions on the soles of his feet and an urticarial rash. S. stercoralis is a parasitic roundworm that resides in the small intestine and is commonly found in areas with poor sanitation. The other options in the vignette do not match the patient’s symptoms, as they do not involve papulovesicular lesions.
Helminths are a group of parasitic worms that can infect humans and cause various diseases. Nematodes, also known as roundworms, are one type of helminth. Strongyloides stercoralis is a type of roundworm that enters the body through the skin and can cause symptoms such as diarrhea, abdominal pain, and skin lesions. Treatment for this infection typically involves the use of ivermectin or benzimidazoles. Enterobius vermicularis, also known as pinworm, is another type of roundworm that can cause perianal itching and other symptoms. Diagnosis is made by examining sticky tape applied to the perianal area. Treatment typically involves benzimidazoles.
Hookworms, such as Ancylostoma duodenale and Necator americanus, are another type of roundworm that can cause gastrointestinal infections and anemia. Treatment typically involves benzimidazoles. Loa loa is a type of roundworm that is transmitted by deer fly and mango fly and can cause red, itchy swellings called Calabar swellings. Treatment involves the use of diethylcarbamazine. Trichinella spiralis is a type of roundworm that can develop after eating raw pork and can cause fever, periorbital edema, and myositis. Treatment typically involves benzimidazoles.
Onchocerca volvulus is a type of roundworm that causes river blindness and is spread by female blackflies. Treatment involves the use of ivermectin. Wuchereria bancrofti is another type of roundworm that is transmitted by female mosquitoes and can cause blockage of lymphatics and elephantiasis. Treatment involves the use of diethylcarbamazine. Toxocara canis, also known as dog roundworm, is transmitted through ingestion of infective eggs and can cause visceral larva migrans and retinal granulomas. Treatment involves the use of diethylcarbamazine. Ascaris lumbricoides, also known as giant roundworm, can cause intestinal obstruction and occasionally migrate to the lung. Treatment typically involves benzimidazoles.
Cestodes, also known as tapeworms, are another type of helminth. Echinococcus granulosus is a tapeworm that is transmitted through ingestion of eggs in dog feces and can cause liver cysts and anaphylaxis if the cyst ruptures
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This question is part of the following fields:
- General Principles
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Question 19
Correct
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A 50-year-old man suffers a closed head injury and experiences a decline in consciousness upon arrival at the hospital. To monitor his intracranial pressure, an ICP monitor is inserted. What is the normal range for intracranial pressure?
Your Answer: 7 - 15mm Hg
Explanation:The typical range for intracranial pressure is 7 to 15 mm Hg, with the brain able to tolerate increases up to 24 mm Hg before displaying noticeable clinical symptoms.
Understanding the Monro-Kelly Doctrine and Autoregulation in the CNS
The Monro-Kelly doctrine governs the pressure within the cranium by considering the skull as a closed box. The loss of cerebrospinal fluid (CSF) can accommodate increases in mass until a critical point is reached, usually at 100-120ml of CSF lost. Beyond this point, intracranial pressure (ICP) rises sharply, and pressure will eventually equate with mean arterial pressure (MAP), leading to neuronal death and herniation.
The central nervous system (CNS) has the ability to autoregulate its own blood supply through vasoconstriction and dilation of cerebral blood vessels. However, extreme blood pressure levels can exceed this capacity, increasing the risk of stroke. Additionally, metabolic factors such as hypercapnia can cause vasodilation, which is crucial in ventilating head-injured patients.
It is important to note that the brain can only metabolize glucose, and a decrease in glucose levels can lead to impaired consciousness. Understanding the Monro-Kelly doctrine and autoregulation in the CNS is crucial in managing intracranial pressure and preventing neurological damage.
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This question is part of the following fields:
- Respiratory System
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Question 20
Incorrect
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Mr. Johnson is a 72-year-old man who was diagnosed with chronic lymphocytic leukaemia (CLL) 18 months ago. His disease has been stable, however he has now presented with fatigue and splenomegaly. His blood results are shown below.
Hb 85 g/dL
WCC 41 x 109 cells/L
Plts 210 x 109 cells/L
MCV 88 fl
Haptoglobin 115 mg/dL (30-200 mg/dL)
Direct Coombs test Positive
What is the most likely diagnosis?Your Answer: Acquired spherocytosis
Correct Answer: Warm autoimmune haemolytic anaemia
Explanation:CLL is linked to warm autoimmune haemolytic anaemia.
Complications of Chronic Lymphocytic Leukaemia
Chronic lymphocytic leukaemia (CLL) is a type of cancer that affects the blood and bone marrow. It can lead to various complications, including anaemia, hypogammaglobulinaemia, and warm autoimmune haemolytic anaemia. Patients with CLL may also experience recurrent infections due to their weakened immune system. However, one of the most severe complications of CLL is Richter’s transformation.
Richter’s transformation occurs when CLL cells transform into a high-grade, fast-growing non-Hodgkin’s lymphoma. This transformation can happen when the leukaemia cells enter the lymph nodes. Patients with Richter’s transformation often become unwell very suddenly and may experience symptoms such as lymph node swelling, fever without infection, weight loss, night sweats, nausea, and abdominal pain.
It is essential for patients with CLL to be aware of the potential complications and to seek medical attention if they experience any concerning symptoms. Regular check-ups and monitoring can also help detect any changes in the condition early on, allowing for prompt treatment and management.
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This question is part of the following fields:
- Haematology And Oncology
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Question 21
Incorrect
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A 55-year-old man visits his GP complaining of excessive thirst and urination for the past two weeks. Upon conducting various tests, it was determined that he has diabetes insipidus due to a hormone deficiency. Which gland is responsible for producing and releasing this hormone into the bloodstream?
Your Answer: Kidneys
Correct Answer: Posterior pituitary
Explanation:ADH and oxytocin are secreted by the posterior pituitary.
When a person has diabetes insipidus, their kidneys are unable to concentrate urine due to a deficiency of antidiuretic hormone (ADH) or resistance to its action. This results in the production and excretion of a large volume of diluted urine.
The posterior pituitary, also known as the neurohypophysis, is the back part of the pituitary gland and is involved in the endocrine system. Unlike the anterior pituitary, it is not glandular and has a direct neural connection to the hypothalamus. It releases oxytocin and vasopressin/ADH directly into the bloodstream.
The pituitary gland is a small gland located within the sella turcica in the sphenoid bone of the middle cranial fossa. It weighs approximately 0.5g and is covered by a dural fold. The gland is attached to the hypothalamus by the infundibulum and receives hormonal stimuli from the hypothalamus through the hypothalamo-pituitary portal system. The anterior pituitary, which develops from a depression in the wall of the pharynx known as Rathkes pouch, secretes hormones such as ACTH, TSH, FSH, LH, GH, and prolactin. GH and prolactin are secreted by acidophilic cells, while ACTH, TSH, FSH, and LH are secreted by basophilic cells. On the other hand, the posterior pituitary, which is derived from neuroectoderm, secretes ADH and oxytocin. Both hormones are produced in the hypothalamus before being transported by the hypothalamo-hypophyseal portal system.
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This question is part of the following fields:
- Neurological System
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Question 22
Incorrect
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A 57-year-old woman is admitted to the orthogeriatric ward for further investigations into the underlying cause of her recurrent falls. During a neurological examination, it is found that she has normal power, tone, reflexes, and coordination in both upper and lower limbs bilaterally, but there is a loss of sensation over the medial aspect of her left leg. Based on this information, which nerve is most likely to have been affected?
Your Answer: Tibial nerve
Correct Answer: Saphenous nerve
Explanation:The femoral nerve is a nerve that originates from the spinal roots L2, L3, and L4. It provides innervation to several muscles in the thigh, including the pectineus, sartorius, quadriceps femoris, and vastus lateralis, medialis, and intermedius. Additionally, it branches off into the medial cutaneous nerve of the thigh, saphenous nerve, and intermediate cutaneous nerve of the thigh. The femoral nerve passes through the psoas major muscle and exits the pelvis by going under the inguinal ligament. It then enters the femoral triangle, which is located lateral to the femoral artery and vein.
To remember the femoral nerve’s supply, a helpful mnemonic is don’t MISVQ scan for PE. This stands for the medial cutaneous nerve of the thigh, intermediate cutaneous nerve of the thigh, saphenous nerve, vastus, quadriceps femoris, and sartorius, with the addition of the pectineus muscle. Overall, the femoral nerve plays an important role in the motor and sensory functions of the thigh.
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This question is part of the following fields:
- Neurological System
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Question 23
Incorrect
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A 25-year-old man admitted to the acute medical ward is administered ceftriaxone for suspected bacterial meningitis. However, he experiences facial angioedema, a new urticarial rash, and stridor shortly after receiving the medication. His vital signs are as follows: respiratory rate 22/min; heart rate 110/min; temperature 37.3ºC; blood pressure 104/56 mmHg; oxygen saturations 95% on air. Which type of cells produce the antibody responsible for this reaction?
Your Answer: Eosinophils
Correct Answer: Plasma cells
Explanation:Plasma cells are responsible for synthesizing IgE. This is important in the context of anaphylactic reactions, which are a type I hypersensitivity reaction. When an antigen is encountered for the first time, plasma cells produce IgE against it. This IgE then binds to Fc receptors on mast cells. Upon re-exposure to the antigen, the bound IgE triggers mast cell degranulation and an anaphylactic reaction. Eosinophils, granulocytes, and mast cells do not synthesize IgE.
Immunoglobulins, also known as antibodies, are proteins produced by the immune system to help fight off infections and diseases. There are five types of immunoglobulins found in the body, each with their own unique characteristics.
IgG is the most abundant type of immunoglobulin in blood serum and plays a crucial role in enhancing phagocytosis of bacteria and viruses. It also fixes complement and can be passed to the fetal circulation.
IgA is the most commonly produced immunoglobulin in the body and is found in the secretions of digestive, respiratory, and urogenital tracts and systems. It provides localized protection on mucous membranes and is transported across the interior of the cell via transcytosis.
IgM is the first immunoglobulin to be secreted in response to an infection and fixes complement, but does not pass to the fetal circulation. It is also responsible for producing anti-A, B blood antibodies.
IgD’s role in the immune system is largely unknown, but it is involved in the activation of B cells.
IgE is the least abundant type of immunoglobulin in blood serum and is responsible for mediating type 1 hypersensitivity reactions. It provides immunity to parasites such as helminths and binds to Fc receptors found on the surface of mast cells and basophils.
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This question is part of the following fields:
- General Principles
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Question 24
Incorrect
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A 40-year-old woman with a history of Sjogren's syndrome visits her doctor complaining of repeated episodes of oral and vaginal candidiasis. She has previously been treated with nystatin and clotrimazole pessaries, but now wants further investigations to determine the underlying cause of her recurrent infections.
Upon conducting a full blood count, the results show lymphopenia, and flow cytometry reveals a specific deficiency of which type of lymphocyte?Your Answer: B lymphocytes
Correct Answer: Cytotoxic T cells
Explanation:The correct answer is Cytotoxic T cells, which express the CD8 antigen on their cell surface membrane. These cells are essential for the cell-mediated immune response and their deficiency can lead to recurrent candidal infections.
B lymphocytes, B memory cells, and Helper T cells are incorrect answers. These cells do not express the CD8 antigen on their cell surface membranes. Instead, they express different antigens at different stages of development, such as CD20, CD21, CD19, and CD4, among others.
The adaptive immune response involves several types of cells, including helper T cells, cytotoxic T cells, B cells, and plasma cells. Helper T cells are responsible for the cell-mediated immune response and recognize antigens presented by MHC class II molecules. They express CD4, CD3, TCR, and CD28 and are a major source of IL-2. Cytotoxic T cells also participate in the cell-mediated immune response and recognize antigens presented by MHC class I molecules. They induce apoptosis in virally infected and tumor cells and express CD8 and CD3. Both helper T cells and cytotoxic T cells mediate acute and chronic organ rejection.
B cells are the primary cells of the humoral immune response and act as antigen-presenting cells. They also mediate hyperacute organ rejection. Plasma cells are differentiated from B cells and produce large amounts of antibody specific to a particular antigen. Overall, these cells work together to mount a targeted and specific immune response to invading pathogens or abnormal cells.
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This question is part of the following fields:
- General Principles
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Question 25
Correct
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A 38-year-old woman arrives at the emergency department complaining of intense abdominal pain and vaginal bleeding. The bleeding is dark, non-clotting, and profuse. This is her fourth pregnancy, and her previous three were uneventful. She is currently 26 weeks pregnant. Upon examination, her heart rate is 110 beats/min, and her blood pressure is 90/60 mmHg. The uterus is hard and tender to the touch. Based on this clinical scenario, what is the most probable diagnosis?
Your Answer: Placental abruption
Explanation:Placental abruption is suggested by several factors in this scenario, including the woman’s age (which increases the risk), high parity, the onset of clinical shock, and most notably, a tender and hard uterus upon examination. Given the gestational age, an ectopic pregnancy or miscarriage is unlikely, and while placenta previa is a common cause of antepartum hemorrhage, it typically presents with painless vaginal bleeding.
Placental Abruption: Causes, Symptoms, and Risk Factors
Placental abruption is a condition that occurs when the placenta separates from the uterine wall, leading to maternal bleeding into the space between the placenta and the uterus. Although the exact cause of placental abruption is unknown, certain factors have been associated with the condition, including proteinuric hypertension, cocaine use, multiparity, maternal trauma, and increasing maternal age. Placental abruption is relatively rare, occurring in approximately 1 out of 200 pregnancies.
The clinical features of placental abruption include shock that is disproportionate to the visible blood loss, constant pain, a tender and tense uterus, a normal lie and presentation, and absent or distressed fetal heart sounds. Coagulation problems may also occur, and it is important to be aware of the potential for pre-eclampsia, disseminated intravascular coagulation (DIC), and anuria.
In summary, placental abruption is a serious condition that can have significant consequences for both the mother and the fetus. Understanding the risk factors and symptoms of placental abruption is important for early detection and prompt treatment.
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This question is part of the following fields:
- Reproductive System
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Question 26
Incorrect
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A 50-year-old woman is referred to the clinic with symptoms of fatigue, constipation, weight gain, and cold intolerance. Thyroid function testing reveals overt hypothyroidism, and the recommended treatment is levothyroxine. What receptors does this medication act on?
Your Answer: Serine/threonine kinase receptors
Correct Answer: Nuclear receptors
Explanation:Levothyroxine exerts its therapeutic effect by interacting with nuclear receptors found within cells. Unlike G protein-coupled receptors, which are activated by a variety of extracellular signals, levothyroxine does not bind to these receptors. Ligand-gated ion channel receptors, which allow ions to pass through in response to ligand binding, are also not affected by levothyroxine. Similarly, levothyroxine does not interact with serine/threonine kinase receptors, which are bound by the ligand transforming growth factor beta. Instead, levothyroxine controls DNA transcription and protein synthesis, resulting in the regulation of metabolic processes.
Pharmacodynamics refers to the effects of drugs on the body, as opposed to pharmacokinetics which is concerned with how the body processes drugs. Drugs typically interact with a target, which can be a protein located either inside or outside of cells. There are four main types of cellular targets: ion channels, G-protein coupled receptors, tyrosine kinase receptors, and nuclear receptors. The type of target determines the mechanism of action of the drug. For example, drugs that work on ion channels cause the channel to open or close, while drugs that activate tyrosine kinase receptors lead to cell growth and differentiation.
It is also important to consider whether a drug has a positive or negative impact on the receptor. Agonists activate the receptor, while antagonists block the receptor preventing activation. Antagonists can be competitive or non-competitive, depending on whether they bind at the same site as the agonist or at a different site. The binding affinity of a drug refers to how readily it binds to a specific receptor, while efficacy measures how well an agonist produces a response once it has bound to the receptor. Potency is related to the concentration at which a drug is effective, while the therapeutic index is the ratio of the dose of a drug resulting in an undesired effect compared to that at which it produces the desired effect.
The relationship between the dose of a drug and the response it produces is rarely linear. Many drugs saturate the available receptors, meaning that further increased doses will not cause any more response. Some drugs do not have a significant impact below a certain dose and are considered sub-therapeutic. Dose-response graphs can be used to illustrate the relationship between dose and response, allowing for easy comparison of different drugs. However, it is important to remember that dose-response varies between individuals.
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This question is part of the following fields:
- General Principles
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Question 27
Correct
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A 38-year-old woman presents with symptoms of irritability and changes in bowel habits. During examination, a smooth enlargement of the thyroid gland is noted. Thyroid function tests are ordered and the results are as follows:
TSH 0.1 mug/l
Free T4 35 pmol/l
What is the most likely underlying diagnosis?Your Answer: Graves disease
Explanation:When TSH receptor antibodies are present, they stimulate the thyroid to produce T4. This results in a decrease in TSH levels due to negative feedback on the pituitary. However, in cases where hyperthyroidism is caused by pregnancy, the TSH levels are usually elevated.
Understanding Thyroid Disease and its Management
Thyroid disease can present with various manifestations, which can be classified based on the presence or absence of clinical signs of thyroid dysfunction and the presence of a mass. To assess thyroid disease, a thorough history and examination, including ultrasound, are necessary. If a nodule is identified, it should be sampled through an image-guided fine needle aspiration. Radionucleotide scanning is not very useful.
Thyroid tumors can be papillary, follicular, anaplastic, medullary, or lymphoma. Multinodular goitre is a common reason for presentation, and if the patient is asymptomatic and euthyroid, they can be reassured. However, if they have compressive symptoms, surgery is required, and total thyroidectomy is the best option. Patients with endocrine dysfunction are initially managed by physicians, and surgery may be offered alongside radioiodine for those with Graves disease that fails with medical management or in patients who prefer not to be irradiated. Patients with hypothyroidism do not generally get offered a thyroidectomy.
Complications following surgery include anatomical damage to the recurrent laryngeal nerve, bleeding, and damage to the parathyroid glands resulting in hypocalcaemia. For further information, the Association of Clinical Biochemistry guidelines for thyroid function tests and the British Association of Endocrine Surgeons website can be consulted.
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This question is part of the following fields:
- Endocrine System
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Question 28
Correct
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A 72-year-old woman is brought to the stroke unit with a suspected stroke. She has a medical history of hypertension, type II diabetes, and hypothyroidism. Additionally, she experienced a myocardial infarction 4 years ago. Upon arrival, the patient exhibited a positive FAST result and an irregular breathing pattern. An urgent brain CT scan was performed and is currently under review. What region of the brainstem is responsible for regulating the fundamental breathing rhythm?
Your Answer: Medulla oblongata
Explanation:The medullary rhythmicity area in the medullary oblongata controls the basic rhythm of breathing through its inspiratory and expiratory neurons. During quiet breathing, the inspiratory area is active for approximately 2 seconds, causing the diaphragm and external intercostals to contract, followed by a period of inactivity lasting around 3 seconds as the muscles relax and there is elastic recoil. Additional brainstem regions can be stimulated to regulate various aspects of breathing, such as extending inspiration in the apneustic area (refer to the table below).
The Control of Ventilation in the Human Body
The control of ventilation in the human body is a complex process that involves various components working together to regulate the respiratory rate and depth of respiration. The respiratory centres, chemoreceptors, lung receptors, and muscles all play a role in this process. The automatic, involuntary control of respiration occurs from the medulla, which is responsible for controlling the respiratory rate and depth of respiration.
The respiratory centres consist of the medullary respiratory centre, apneustic centre, and pneumotaxic centre. The medullary respiratory centre has two groups of neurons, the ventral group, which controls forced voluntary expiration, and the dorsal group, which controls inspiration. The apneustic centre, located in the lower pons, stimulates inspiration and activates and prolongs inhalation. The pneumotaxic centre, located in the upper pons, inhibits inspiration at a certain point and fine-tunes the respiratory rate.
Ventilatory variables, such as the levels of pCO2, are the most important factors in ventilation control, while levels of O2 are less important. Peripheral chemoreceptors, located in the bifurcation of carotid arteries and arch of the aorta, respond to changes in reduced pO2, increased H+, and increased pCO2 in arterial blood. Central chemoreceptors, located in the medulla, respond to increased H+ in brain interstitial fluid to increase ventilation. It is important to note that the central receptors are not influenced by O2 levels.
Lung receptors also play a role in the control of ventilation. Stretch receptors respond to lung stretching, causing a reduced respiratory rate, while irritant receptors respond to smoke, causing bronchospasm. J (juxtacapillary) receptors are also involved in the control of ventilation. Overall, the control of ventilation is a complex process that involves various components working together to regulate the respiratory rate and depth of respiration.
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This question is part of the following fields:
- Respiratory System
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Question 29
Correct
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As a junior doctor in a GP surgery, you are requested to examine an 82-year-old man who has reported a tremor in his left hand. What additional symptoms could indicate the presence of Parkinson's disease?
Your Answer: Bradykinesia and rigidity
Explanation:Parkinson’s disease is characterized by three main symptoms: tremor at rest, bradykinesia, and rigidity. Nystagmus is not a typical feature of Parkinson’s disease, while chorea is more commonly associated with Huntington’s disease. Although ataxia may be present in Parkinson’s disease, it is more frequently seen in cases of cerebellar lesions.
Parkinson’s disease is a progressive neurodegenerative disorder that occurs due to the degeneration of dopaminergic neurons in the substantia nigra. This leads to a classic triad of symptoms, including bradykinesia, tremor, and rigidity, which are typically asymmetrical. The disease is more common in men and is usually diagnosed around the age of 65. Bradykinesia is characterized by a poverty of movement, shuffling steps, and difficulty initiating movement. Tremors are most noticeable at rest and typically occur in the thumb and index finger. Rigidity can be either lead pipe or cogwheel, and other features include mask-like facies, flexed posture, and drooling of saliva. Psychiatric features such as depression, dementia, and sleep disturbances may also occur. Diagnosis is usually clinical, but if there is difficulty differentiating between essential tremor and Parkinson’s disease, 123I‑FP‑CIT single photon emission computed tomography (SPECT) may be considered.
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This question is part of the following fields:
- Neurological System
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Question 30
Incorrect
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A 30-year-old male comes to your clinic with a three-month history of abdominal pain that is relieved by eating. You suspect a duodenal ulcer and plan to test for Helicobacter pylori infection using a urea breath test. He has no history of NSAID use and lives in a city where the prevalence of H. pylori is 40%. The sensitivity of the test is 96%, and the specificity is 92%. What is the likelihood ratio for a positive test result?
Your Answer: 4
Correct Answer: 12
Explanation:The positive likelihood ratio of a test can be calculated using the formula: sensitivity divided by (1 minus specificity). This ratio is not affected by the prevalence of the disease. For example, if the sensitivity of a test is 0.96 and the specificity is 0.92, the positive likelihood ratio would be 12.
Precision refers to the consistency of a test in producing the same results when repeated multiple times. It is an important aspect of test reliability and can impact the accuracy of the results. In order to assess precision, multiple tests are performed on the same sample and the results are compared. A test with high precision will produce similar results each time it is performed, while a test with low precision will produce inconsistent results. It is important to consider precision when interpreting test results and making clinical decisions.
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This question is part of the following fields:
- General Principles
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Question 31
Correct
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An 80-year-old woman came in with an acute myocardial infarction. The ECG revealed ST segment elevation in leads II, III, and aVF. Which coronary artery is the most probable to be blocked?
Your Answer: Right coronary artery
Explanation:Localisation of Myocardial Infarction
Myocardial infarction (MI) is a medical emergency that occurs when there is a blockage in the blood flow to the heart muscle. The location of the blockage determines the type of MI and the treatment required. An inferior MI is caused by the occlusion of the right coronary artery, which supplies blood to the bottom of the heart. This type of MI can cause symptoms such as chest pain, shortness of breath, and nausea. It is important to identify the location of the MI quickly to provide appropriate treatment and prevent further damage to the heart muscle. Proper diagnosis and management can improve the patient’s chances of survival and reduce the risk of complications.
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This question is part of the following fields:
- Cardiovascular System
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Question 32
Incorrect
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A 65-year-old man is set to undergo a surgical procedure to drain an abscess situated on the medial side of his lower leg. The anaesthetist plans to administer a saphenous nerve block by injecting a local anaesthetic through the adductor canal's roof. What is the muscular structure that the needle for the local anaesthetic must pass through?
Your Answer: Adductor longus
Correct Answer: Sartorius
Explanation:The Adductor Canal: Anatomy and Contents
The adductor canal, also known as Hunter’s or the subsartorial canal, is a structure located in the middle third of the thigh, immediately distal to the apex of the femoral triangle. It is bordered laterally by the vastus medialis muscle and posteriorly by the adductor longus and adductor magnus muscles. The roof of the canal is formed by the sartorius muscle. The canal terminates at the adductor hiatus.
The adductor canal contains three important structures: the saphenous nerve, the superficial femoral artery, and the superficial femoral vein. The saphenous nerve is a sensory nerve that supplies the skin of the medial leg and foot. The superficial femoral artery is a major artery that supplies blood to the lower limb. The superficial femoral vein is a large vein that drains blood from the lower limb.
In order to expose the contents of the adductor canal, the sartorius muscle must be removed. Understanding the anatomy and contents of the adductor canal is important for medical professionals who perform procedures in this area, such as nerve blocks or vascular surgeries.
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This question is part of the following fields:
- Musculoskeletal System And Skin
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Question 33
Incorrect
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A 50-year-old male is brought to your clinic by his wife due to concerns of his 'skin and eyes looking yellow' and has worsened since it started 3 months ago. On systematic examination, you noticed jaundice and cachexia but it is otherwise unremarkable. On further questioning the man himself reports that his urine has been getting darker as well as stools becoming paler. You order an urgent CT scan which showed a mass lesion at the head of the pancreas. What is the direct explanation for the change in color of his stools?
Your Answer: Increase in unconjugated bilirubin in the systemic circulation
Correct Answer: Decrease in stercobilin
Explanation:The presentation of symptoms related to the conjugation of bilirubin varies depending on where the process is disrupted, such as pre-hepatic, hepatic, or post-hepatic. In this case, a mass in the pancreatic head has caused an obstruction of the common bile duct, which is post-hepatic. This obstruction results in less conjugated bilirubin reaching the intestinal tract and more being absorbed into the systemic circulation. As a result, there is a decrease in stercobilin production, leading to paler stools.
Pancreatic cancer is a type of cancer that is often diagnosed late due to its non-specific symptoms. The majority of pancreatic tumors are adenocarcinomas and are typically found in the head of the pancreas. Risk factors for pancreatic cancer include increasing age, smoking, diabetes, chronic pancreatitis, hereditary non-polyposis colorectal carcinoma, and mutations in the BRCA2 and KRAS genes.
Symptoms of pancreatic cancer can include painless jaundice, pale stools, dark urine, and pruritus. Courvoisier’s law states that a palpable gallbladder is unlikely to be due to gallstones in the presence of painless obstructive jaundice. However, patients often present with non-specific symptoms such as anorexia, weight loss, and epigastric pain. Loss of exocrine and endocrine function can also occur, leading to steatorrhea and diabetes mellitus. Atypical back pain and migratory thrombophlebitis (Trousseau sign) are also common.
Ultrasound has a sensitivity of around 60-90% for detecting pancreatic cancer, but high-resolution CT scanning is the preferred diagnostic tool. The ‘double duct’ sign, which is the simultaneous dilatation of the common bile and pancreatic ducts, may be seen on imaging.
Less than 20% of patients with pancreatic cancer are suitable for surgery at the time of diagnosis. A Whipple’s resection (pancreaticoduodenectomy) may be performed for resectable lesions in the head of the pancreas, but side-effects such as dumping syndrome and peptic ulcer disease can occur. Adjuvant chemotherapy is typically given following surgery, and ERCP with stenting may be used for palliation.
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This question is part of the following fields:
- Gastrointestinal System
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Question 34
Incorrect
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A 17-year-old girl is scheduled for surgery to remove a thyroglossal cyst, which will involve removing a part of the hyoid bone. Can you identify the cervical level where the hyoid bone is located?
Your Answer: C4
Correct Answer: C3
Explanation:Levels of Hyoid Bone, Thyroid Cartilage, and Cricoid Cartilage in the Neck
The neck contains several important structures, including the hyoid bone, thyroid cartilage, and cricoid cartilage. These structures are located at specific levels in the cervical spine. The hyoid bone is situated at the level of the third cervical vertebrae (C3). The thyroid cartilage, which forms the Adam’s apple in males, is located at the level of the fourth and fifth cervical vertebrae (C4 and C5). Finally, the cricoid cartilage, which is the only complete ring of cartilage in the trachea, is situated at the level of the sixth cervical vertebrae (C6). the location of these structures is important for medical professionals who may need to perform procedures or surgeries in the neck region.
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This question is part of the following fields:
- Clinical Sciences
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Question 35
Correct
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A 65-year-old man presents with a persistent dry cough and unintentional weight loss of 5kg over the past 3 months. He denies experiencing chest pain, dyspnoea, fever or haemoptysis. The patient has a history of smoking 10 cigarettes a day for the last 50 years and has been diagnosed with COPD. A nodule is detected on chest x-ray, and biopsy results indicate a tumour originating from the bronchial glands.
What is the most probable diagnosis?Your Answer: Adenocarcinoma of the lung
Explanation:Adenocarcinoma has become the most prevalent form of lung cancer, originating from the bronchial glands as a type of non-small-cell lung cancer.
While a bronchogenic cyst may cause chest pain and dysphagia, it is typically diagnosed during childhood and does not stem from the bronchial glands.
Sarcoidosis may result in a persistent cough and weight loss, but it typically affects multiple systems and does not involve nodules originating from the bronchial glands.
Small cell carcinoma of the lung is a significant consideration, but given the description of a tumor originating from the bronchial glands, adenocarcinoma is the more probable diagnosis.
Lung cancer can be classified into two main types: small cell lung cancer (SCLC) and non-small cell lung cancer (NSCLC). SCLC is less common, accounting for only 15% of cases, but has a worse prognosis. NSCLC, on the other hand, is more prevalent and can be further broken down into different subtypes. Adenocarcinoma is now the most common type of lung cancer, likely due to the increased use of low-tar cigarettes. It is often seen in non-smokers and accounts for 62% of cases in ‘never’ smokers. Squamous cell carcinoma is another subtype, and cavitating lesions are more common in this type of lung cancer. Large cell carcinoma, alveolar cell carcinoma, bronchial adenoma, and carcinoid are other subtypes of NSCLC. Differentiating between these subtypes is crucial as different drugs are available to treat each subtype.
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This question is part of the following fields:
- Respiratory System
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Question 36
Incorrect
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What is the way in which penicillins work?
Your Answer: Inhibition of protein synthesis
Correct Answer: Inhibition of cell wall synthesis
Explanation:Mechanisms of Antibiotic Action
Antibiotics work by targeting specific components of bacterial cells to inhibit their growth and replication. Penicillins, for example, target the bacterial cell wall by binding to penicillin-binding proteins, preventing cross-linking, and stimulating breakdown by activating autolytic enzymes. While penicillins have a relatively narrow range of coverage, they have been modified to give wider action, but the same mechanism of action is used by more advanced penicillins such as amoxicillin and piperacillin.
Other antibiotics target different components of bacterial cells. Rifampicin inhibits DNA synthesis, while trimethoprim inhibits folate production. Colistin inhibits membrane production, and chloramphenicol inhibits protein synthesis. Each antibiotic has a specific mechanism of action that makes it effective against certain types of bacteria.
the mechanisms of antibiotic action is important for developing new antibiotics and for using existing antibiotics effectively. By targeting specific components of bacterial cells, antibiotics can effectively kill or inhibit the growth of harmful bacteria, helping to prevent and treat infections.
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This question is part of the following fields:
- Microbiology
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Question 37
Correct
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A 45-year-old man arrives at the emergency department with a shoulder injury sustained during a football game. He reports experiencing sudden pain after colliding with another player. Upon examination, there is no evidence of neurovascular impairment, but an x-ray reveals anterior displacement of the humeral head. To alleviate the patient's discomfort during the relocation procedure, ketamine is administered as an analgesic. What is the mechanism of action of this medication?
Your Answer: NMDA antagonist
Explanation:Ketamine’s mechanism of action is as an NMDA antagonist, blocking NMDA receptors. It is commonly used as an anaesthetic agent for short-term procedures, inducing a dissociative state rather than a full loss of consciousness. Ketamine is not an opioid drug and does not act on opioid receptors. It also does not inhibit the reuptake of GABA or potentiate the effect of GABA. Muscarinic antagonist is an incorrect answer as it is a class of drugs used for various conditions through their actions on the parasympathetic nervous system.
Overview of General Anaesthetics
General anaesthetics are drugs used to induce a state of unconsciousness in patients undergoing surgical procedures. They can be administered through inhalation or intravenous injection. Inhaled anaesthetics, such as isoflurane, desflurane, sevoflurane, and nitrous oxide, work by acting on various receptors in the brain, including GABAA, glycine, NDMA, nACh, and 5-HT3. These drugs can cause adverse effects such as myocardial depression, malignant hyperthermia, and increased pressure in gas-filled body compartments. Intravenous anaesthetics, such as propofol, thiopental, etomidate, and ketamine, also act on receptors in the brain, but through different mechanisms. These drugs can cause adverse effects such as pain on injection, hypotension, laryngospasm, and hallucinations. Each drug has its own unique properties and is chosen based on the patient’s medical history and the type of surgery being performed.
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This question is part of the following fields:
- General Principles
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Question 38
Incorrect
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A 90-year-old male has received a diagnosis of anorectal cancer. Imaging studies indicate that the cancer is confined to an area below the pectinate line. If left untreated, which set of lymph nodes is most likely to be affected by metastasis?
Your Answer: Internal iliac
Correct Answer: Superficial inguinal
Explanation:When rectal cancer occurs below the pectinate line, it has the potential to spread to the superficial inguinal lymph nodes. Conversely, if the cancer is located above the line, it may spread to the internal iliac lymph nodes. Additionally, the internal iliac and sacral nodes can receive drainage from various regions including the rectum, perineum, cervix, and prostate.
Lymphatic drainage is the process by which lymphatic vessels carry lymph, a clear fluid containing white blood cells, away from tissues and organs and towards lymph nodes. The lymphatic vessels that drain the skin and follow venous drainage are called superficial lymphatic vessels, while those that drain internal organs and structures follow the arteries and are called deep lymphatic vessels. These vessels eventually lead to lymph nodes, which filter and remove harmful substances from the lymph before it is returned to the bloodstream.
The lymphatic system is divided into two main ducts: the right lymphatic duct and the thoracic duct. The right lymphatic duct drains the right side of the head and right arm, while the thoracic duct drains everything else. Both ducts eventually drain into the venous system.
Different areas of the body have specific primary lymph node drainage sites. For example, the superficial inguinal lymph nodes drain the anal canal below the pectinate line, perineum, skin of the thigh, penis, scrotum, and vagina. The deep inguinal lymph nodes drain the glans penis, while the para-aortic lymph nodes drain the testes, ovaries, kidney, and adrenal gland. The axillary lymph nodes drain the lateral breast and upper limb, while the internal iliac lymph nodes drain the anal canal above the pectinate line, lower part of the rectum, and pelvic structures including the cervix and inferior part of the uterus. The superior mesenteric lymph nodes drain the duodenum and jejunum, while the inferior mesenteric lymph nodes drain the descending colon, sigmoid colon, and upper part of the rectum. Finally, the coeliac lymph nodes drain the stomach.
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This question is part of the following fields:
- Haematology And Oncology
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Question 39
Incorrect
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During a routine check-up, an elderly woman is found to have lower blood pressure than before. She is reassured that this is normal. Which substrate is responsible for this?
Your Answer: Nitric oxide
Correct Answer: Progesterone
Explanation:During pregnancy, progesterone plays a crucial role in causing various changes in the body, including the relaxation of smooth muscles, which leads to a decrease in blood pressure. On the other hand, follicle-stimulating hormone (FSH) and luteinizing hormone (LH) stimulate the release of estrogen and testosterone, which are essential for the menstrual cycle and pregnancy, but do not directly cause any significant changes.
While raised levels of estrogen in the first trimester may cause nausea and other symptoms like spider naevi, palmar erythema, and skin pigmentation, they are not responsible for pregnancy-related cardiovascular changes. Similarly, testosterone typically causes symptoms of hyperandrogenism, such as hirsutism and acne, which are not related to pregnancy but are seen in conditions like polycystic ovary syndrome.
During pregnancy, various physiological changes occur in the body, such as an increase in uterine size, cervical ectropion, increased vaginal discharge, and cardiovascular/haemodynamic changes like increased plasma volume, white cell count, platelets, ESR, cholesterol, and fibrinogen, and decreased albumin, urea, and creatinine. Progesterone-related effects, such as muscle relaxation, can cause decreased blood pressure, constipation, ureteral dilation, bladder relaxation, biliary stasis, and increased tidal volume.
Oestrogen and Progesterone: Their Sources and Functions
Oestrogen and progesterone are two important hormones in the female body. Oestrogen is primarily produced by the ovaries, but can also be produced by the placenta and blood via aromatase. Its functions include promoting the development of genitalia, causing the LH surge, and increasing hepatic synthesis of transport proteins. It also upregulates oestrogen, progesterone, and LH receptors, and is responsible for female fat distribution. On the other hand, progesterone is produced by the corpus luteum, placenta, and adrenal cortex. Its main function is to maintain the endometrium and pregnancy, as well as to thicken cervical mucous and decrease myometrial excitability. It also increases body temperature and is responsible for spiral artery development.
It is important to note that these hormones work together in regulating the menstrual cycle and preparing the body for pregnancy. Oestrogen promotes the proliferation of the endometrium, while progesterone maintains it. Without these hormones, the menstrual cycle and pregnancy would not be possible. Understanding the sources and functions of oestrogen and progesterone is crucial in diagnosing and treating hormonal imbalances and reproductive disorders.
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This question is part of the following fields:
- Reproductive System
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Question 40
Correct
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A 54-year-old man complains of epigastric discomfort and experiences migratory thrombophlebitis. During examination, he displays mild jaundice. A CT scan reveals a mass in the pancreatic head and peri hilar lymphadenopathy. What is the probable underlying diagnosis?
Your Answer: Adenocarcinoma of the pancreas
Explanation:The most probable diagnosis is adenocarcinoma of the pancreas, which is often accompanied by migratory thrombophlebitis. Squamous cell carcinoma is a rare occurrence in the pancreas.
Pancreatic cancer is a type of cancer that is often diagnosed late due to its non-specific symptoms. The majority of pancreatic tumors are adenocarcinomas and are typically found in the head of the pancreas. Risk factors for pancreatic cancer include increasing age, smoking, diabetes, chronic pancreatitis, hereditary non-polyposis colorectal carcinoma, and mutations in the BRCA2 and KRAS genes.
Symptoms of pancreatic cancer can include painless jaundice, pale stools, dark urine, and pruritus. Courvoisier’s law states that a palpable gallbladder is unlikely to be due to gallstones in the presence of painless obstructive jaundice. However, patients often present with non-specific symptoms such as anorexia, weight loss, and epigastric pain. Loss of exocrine and endocrine function can also occur, leading to steatorrhea and diabetes mellitus. Atypical back pain and migratory thrombophlebitis (Trousseau sign) are also common.
Ultrasound has a sensitivity of around 60-90% for detecting pancreatic cancer, but high-resolution CT scanning is the preferred diagnostic tool. The ‘double duct’ sign, which is the simultaneous dilatation of the common bile and pancreatic ducts, may be seen on imaging.
Less than 20% of patients with pancreatic cancer are suitable for surgery at the time of diagnosis. A Whipple’s resection (pancreaticoduodenectomy) may be performed for resectable lesions in the head of the pancreas, but side-effects such as dumping syndrome and peptic ulcer disease can occur. Adjuvant chemotherapy is typically given following surgery, and ERCP with stenting may be used for palliation.
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This question is part of the following fields:
- Gastrointestinal System
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Question 41
Correct
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In a 5-year-old with a single palmar crease, prominent supra-orbital ridge, brush spots, slanted ears and hypotonia, what is the most probable underlying mechanism?
Your Answer: Trisomy 21
Explanation:Down’s Syndrome is primarily caused by non-disjunction during maternal meiosis, with a small percentage of cases resulting from reciprocal or Robertsonian translocations.
Features of Down’s Syndrome
Down’s syndrome is a genetic disorder that affects individuals in various ways. The clinical features of Down’s syndrome include distinct facial characteristics such as upslanting palpebral fissures, epicanthic folds, Brushfield spots in the iris, protruding tongue, small low-set ears, and a round or flat face. Other physical features include a flat occiput, a single palmar crease, and a pronounced sandal gap between the big and first toe. Hypotonia, or low muscle tone, is also common in individuals with Down’s syndrome.
In addition to physical features, individuals with Down’s syndrome may also experience cardiac complications, with congenital heart defects present in 40-50% of cases. These can include endocardial cushion defect, ventricular septal defect, secundum atrial septal defect, tetralogy of Fallot, and isolated patent ductus arteriosus.
Later complications of Down’s syndrome can include subfertility, learning difficulties, short stature, repeated respiratory infections, hearing impairment from glue ear, acute lymphoblastic leukaemia, hypothyroidism, Alzheimer’s disease, and atlantoaxial instability. Males with Down’s syndrome are almost always infertile due to impaired spermatogenesis, while females are usually subfertile and have an increased incidence of problems with pregnancy and labour.
Overall, Down’s syndrome can affect individuals in a variety of ways, with physical and medical features that can impact their daily lives.
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This question is part of the following fields:
- General Principles
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Question 42
Incorrect
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An aged woman with malabsorption and weight loss was diagnosed with small bowel amyloidosis. She was initially found to have osteomalacia and hypocalcemia. Despite receiving total parenteral nutrition with sufficient calcium replacement for the past seven days, she remained hypocalcemic. Which electrolyte deficiency is most likely responsible for this condition?
Your Answer: Phosphate
Correct Answer: Magnesium
Explanation:Magnesium deficiency may occur in patients with malabsorption, even if they receive magnesium through TPN feeds, as it may not be enough to compensate for their losses. Serum calcium levels are not affected by sodium, phosphate, and potassium.
The Importance of Magnesium and Calcium in the Body
Magnesium and calcium are essential minerals in the body. Magnesium plays a crucial role in the secretion and action of parathyroid hormone (PTH) on target tissues. However, a deficiency in magnesium can cause hypocalcaemia and make patients unresponsive to calcium and vitamin D supplementation.
The body contains 1000 mmol of magnesium, with half stored in bones and the rest in muscle, soft tissues, and extracellular fluid. Unlike calcium, there is no specific hormonal control of magnesium. Hormones such as PTH and aldosterone affect the renal handling of magnesium.
Magnesium and calcium also interact at a cellular level. A decrease in magnesium levels can affect the permeability of cellular membranes to calcium, leading to hyperexcitability. Therefore, it is essential to maintain adequate levels of both magnesium and calcium in the body for optimal health.
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This question is part of the following fields:
- Endocrine System
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Question 43
Correct
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A 55-year-old woman comes to the clinic with a lump in the upper outer quadrant of her left breast. Which of the following statements about the breast is false?
Your Answer: Nipple retraction may occur as a result of tumour infiltration of the clavipectoral fascia
Explanation:Breast malignancy often leads to skin dimpling and nipple retraction, which are caused by the tumour infiltrating the breast ligaments and ducts. The axillary contents are enclosed by the clavipectoral fascia, and the breast’s lymphatic drainage occurs in both the axilla and internal mammary chain. The breast is highly vascularized, with the internal mammary artery being a subclavian artery branch.
The breast is situated on a layer of pectoral fascia and is surrounded by the pectoralis major, serratus anterior, and external oblique muscles. The nerve supply to the breast comes from branches of intercostal nerves from T4-T6, while the arterial supply comes from the internal mammary (thoracic) artery, external mammary artery (laterally), anterior intercostal arteries, and thoraco-acromial artery. The breast’s venous drainage is through a superficial venous plexus to subclavian, axillary, and intercostal veins. Lymphatic drainage occurs through the axillary nodes, internal mammary chain, and other lymphatic sites such as deep cervical and supraclavicular fossa (later in disease).
The preparation for lactation involves the hormones oestrogen, progesterone, and human placental lactogen. Oestrogen promotes duct development in high concentrations, while high levels of progesterone stimulate the formation of lobules. Human placental lactogen prepares the mammary glands for lactation. The two hormones involved in stimulating lactation are prolactin and oxytocin. Prolactin causes milk secretion, while oxytocin causes contraction of the myoepithelial cells surrounding the mammary alveoli to result in milk ejection from the breast. Suckling of the baby stimulates the mechanoreceptors in the nipple, resulting in the release of both prolactin and oxytocin from the pituitary gland (anterior and posterior parts respectively).
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This question is part of the following fields:
- Reproductive System
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Question 44
Incorrect
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A 10-year-old girl with no previous medical history presents to the emergency department with vomiting and diarrhea. She also complains of abdominal pain. A venous blood gas test is performed and shows the following results:
Normal range
pH: 7.14 (7.35 - 7.45)
pO2: 11.6 (10 - 14)kPa
pCO2: 3.3 (4.5 - 6.0)kPa
HCO3: 10 (22 - 26)mmol/l
BE: -16 (-2 to +2)mmol/l
Lactate: 4.1 0.6-1.8mmol/l
Potassium: 5.4 3.5-5 mmol/l
A blood glucose finger-prick test is also performed, which reads Glucose = 24. Based on the information provided, what is the most likely diagnosis?Your Answer: Acute gastroenteritis
Correct Answer: Diabetic ketoacidosis
Explanation:Diabetic ketoacidosis is depicted in this image. It is a critical condition that requires urgent attention, with a focus on administering insulin, fluid resuscitation, and closely monitoring potassium levels.
Diabetic ketoacidosis (DKA) is a serious complication of type 1 diabetes mellitus, accounting for around 6% of cases. It can also occur in rare cases of extreme stress in patients with type 2 diabetes mellitus. DKA is caused by uncontrolled lipolysis, resulting in an excess of free fatty acids that are converted to ketone bodies. The most common precipitating factors of DKA are infection, missed insulin doses, and myocardial infarction. Symptoms include abdominal pain, polyuria, polydipsia, dehydration, Kussmaul respiration, and breath that smells like acetone. Diagnostic criteria include glucose levels above 11 mmol/l or known diabetes mellitus, pH below 7.3, bicarbonate below 15 mmol/l, and ketones above 3 mmol/l or urine ketones ++ on dipstick.
Management of DKA involves fluid replacement, insulin, and correction of electrolyte disturbance. Fluid replacement is necessary as most patients with DKA are deplete around 5-8 litres. Isotonic saline is used initially, even if the patient is severely acidotic. Insulin is administered through an intravenous infusion, and correction of electrolyte disturbance is necessary. Long-acting insulin should be continued, while short-acting insulin should be stopped. Complications may occur from DKA itself or the treatment, such as gastric stasis, thromboembolism, arrhythmias, acute respiratory distress syndrome, acute kidney injury, and cerebral edema. Children and young adults are particularly vulnerable to cerebral edema following fluid resuscitation in DKA and often need 1:1 nursing to monitor neuro-observations, headache, irritability, visual disturbance, focal neurology, etc.
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This question is part of the following fields:
- Endocrine System
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Question 45
Correct
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A 26-year-old man from Sub Saharan Africa comes to the clinic with complaints of lymphadenopathy and weight loss. The doctor suspects tuberculosis and performs a lymph node biopsy. Which staining agent is most likely to aid in identifying the causative organism?
Your Answer: Ziehl-Neelsen stain
Explanation:Ziehl-Neelsen stain is used for mycobacteria, not Gram staining. Van Gieson and Masson trichrome are for connective tissues, while Von Kossa identifies tissue mineralisation.
Understanding Tuberculosis: The Pathophysiology and Risk Factors
Tuberculosis is a bacterial infection caused by Mycobacterium tuberculosis. The pathophysiology of tuberculosis involves the migration of macrophages to regional lymph nodes, forming a Ghon complex. This complex leads to the formation of a granuloma, which is a collection of epithelioid histiocytes with caseous necrosis in the center. The inflammatory response is mediated by a type 4 hypersensitivity reaction. While healthy individuals can contain the disease, immunocompromised individuals are at risk of developing disseminated (miliary) TB.
Several risk factors increase the likelihood of developing tuberculosis. These include having lived in Asia, Latin America, Eastern Europe, or Africa for years, exposure to an infectious TB case, and being infected with HIV. Immunocompromised individuals, such as diabetics, patients on immunosuppressive therapy, malnourished individuals, or those with haematological malignancies, are also at risk. Additionally, silicosis and apical fibrosis increase the likelihood of developing tuberculosis. Understanding the pathophysiology and risk factors of tuberculosis is crucial in preventing and treating this infectious disease.
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This question is part of the following fields:
- General Principles
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Question 46
Correct
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At what age is a ventricular septal defect typically diagnosed, and what cardiovascular structure is responsible for its development due to embryological failure?
Your Answer: Endocardial cushions
Explanation:The heart’s development starts at approximately day 18 in the embryo, originating from a group of cells in the cardiogenic area of the mesoderm. The underlying endoderm signals the formation of the cardiogenic cords, which fuse together to create the primitive heart tube.
Around day 22, the primitive heart tube develops into five regions: the truncus arteriosus, bulbus cordis, primitive ventricle, primitive atrium, and sinus venosus. These regions eventually become the ascending aorta and pulmonary trunk, right and left ventricles, anterior atrial walls and appendages, and coronary sinus and sino-atrial node, respectively.
Over the next week, the heart undergoes morphogenesis, twisting and looping from a vertical tube into a premature heart with atrial and ventricular orientation present by day 28. The endocardial cushions, thickenings of mesoderm in the inner lining of the heart walls, appear and grow towards each other, dividing the atrioventricular canal into left and right sides. Improper development of the endocardial cushions can result in a ventricular septal defect.
By the end of the fifth week, the four heart chamber positions are complete, and the atrioventricular and semilunar valves form between the fifth and ninth weeks.
Understanding Ventricular Septal Defect
Ventricular septal defect (VSD) is a common congenital heart disease that affects many individuals. It is caused by a hole in the wall that separates the two lower chambers of the heart. In some cases, VSDs may close on their own, but in other cases, they require specialized management.
There are various causes of VSDs, including chromosomal disorders such as Down’s syndrome, Edward’s syndrome, Patau syndrome, and cri-du-chat syndrome. Congenital infections and post-myocardial infarction can also lead to VSDs. The condition can be detected during routine scans in utero or may present post-natally with symptoms such as failure to thrive, heart failure, hepatomegaly, tachypnea, tachycardia, pallor, and a pansystolic murmur.
Management of VSDs depends on the size and symptoms of the defect. Small VSDs that are asymptomatic may require monitoring, while moderate to large VSDs may result in heart failure and require nutritional support, medication for heart failure, and surgical closure of the defect.
Complications of VSDs include aortic regurgitation, infective endocarditis, Eisenmenger’s complex, right heart failure, and pulmonary hypertension. Eisenmenger’s complex is a severe complication that results in cyanosis and clubbing and is an indication for a heart-lung transplant. Women with pulmonary hypertension are advised against pregnancy as it carries a high risk of mortality.
In conclusion, VSD is a common congenital heart disease that requires specialized management. Early detection and appropriate treatment can prevent severe complications and improve outcomes for affected individuals.
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This question is part of the following fields:
- Cardiovascular System
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Question 47
Incorrect
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At a rheumatology appointment, a 47-year-old woman with uncontrolled rheumatoid arthritis is prescribed anakinra, an IL-1 receptor antagonist. What type of cell produces IL-1?
Your Answer: Neutrophils
Correct Answer: Macrophages
Explanation:Macrophages are the primary source of IL-1, an acute inflammatory cytokine. This cytokine is mainly produced by innate immune cells, with macrophages being responsible for its production. While other innate immune cells such as basophils, neutrophils, and eosinophils also produce proinflammatory cytokines, they do so in lower quantities than macrophages. T cells, on the other hand, do not produce IL-1.
Overview of Cytokines and Their Functions
Cytokines are signaling molecules that play a crucial role in the immune system. Interleukins are a type of cytokine that are produced by various immune cells and have specific functions. IL-1, produced by macrophages, induces acute inflammation and fever. IL-2, produced by Th1 cells, stimulates the growth and differentiation of T cell responses. IL-3, produced by activated T helper cells, stimulates the differentiation and proliferation of myeloid progenitor cells. IL-4, produced by Th2 cells, stimulates the proliferation and differentiation of B cells. IL-5, also produced by Th2 cells, stimulates the production of eosinophils. IL-6, produced by macrophages and Th2 cells, stimulates the differentiation of B cells and induces fever. IL-8, produced by macrophages, promotes neutrophil chemotaxis. IL-10, produced by Th2 cells, inhibits Th1 cytokine production and is known as an anti-inflammatory cytokine. IL-12, produced by dendritic cells, macrophages, and B cells, activates NK cells and stimulates the differentiation of naive T cells into Th1 cells.
In addition to interleukins, there are other cytokines with specific functions. Tumor necrosis factor-alpha, produced by macrophages, induces fever and promotes neutrophil chemotaxis. Interferon-gamma, produced by Th1 cells, activates macrophages. Understanding the functions of cytokines is important in developing treatments for various immune-related diseases.
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This question is part of the following fields:
- General Principles
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Question 48
Incorrect
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A 76-year-old man is scheduled for an internal carotid artery endarterectomy. During the dissection, which nervous structure is most vulnerable?
Your Answer: Recurrent laryngeal nerve
Correct Answer: Hypoglossal nerve
Explanation:The carotid endarterectomy procedure poses a risk to several nerves, including the hypoglossal nerve, greater auricular nerve, and superior laryngeal nerve. The dissection of the sternocleidomastoid muscle, ligation of the common facial vein, and exposure of the common and internal carotid arteries can all potentially damage these nerves. However, the sympathetic chain located posteriorly is less susceptible to injury during this operation.
The internal carotid artery originates from the common carotid artery near the upper border of the thyroid cartilage and travels upwards to enter the skull through the carotid canal. It then passes through the cavernous sinus and divides into the anterior and middle cerebral arteries. In the neck, it is surrounded by various structures such as the longus capitis, pre-vertebral fascia, sympathetic chain, and superior laryngeal nerve. It is also closely related to the external carotid artery, the wall of the pharynx, the ascending pharyngeal artery, the internal jugular vein, the vagus nerve, the sternocleidomastoid muscle, the lingual and facial veins, and the hypoglossal nerve. Inside the cranial cavity, the internal carotid artery bends forwards in the cavernous sinus and is closely related to several nerves such as the oculomotor, trochlear, ophthalmic, and maxillary nerves. It terminates below the anterior perforated substance by dividing into the anterior and middle cerebral arteries and gives off several branches such as the ophthalmic artery, posterior communicating artery, anterior choroid artery, meningeal arteries, and hypophyseal arteries.
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This question is part of the following fields:
- Neurological System
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Question 49
Incorrect
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A 44-year-old woman presents with varicose veins and has a saphenofemoral disconnection, long saphenous vein stripping to the ankle, and isolated hook phlebectomies. After the surgery, she experiences numbness above her ankle. What is the probable reason for this?
Your Answer: Superficial peroneal nerve injury
Correct Answer: Saphenous nerve injury
Explanation:Full length stripping of the long saphenous vein below the knee is no longer recommended due to its relation to the saphenous nerve, while the short saphenous vein is related to the sural nerve.
The Anatomy of Saphenous Veins
The human body has two saphenous veins: the long saphenous vein and the short saphenous vein. The long saphenous vein is often used for bypass surgery or removed as a treatment for varicose veins. It originates at the first digit where the dorsal vein merges with the dorsal venous arch of the foot and runs up the medial side of the leg. At the knee, it runs over the posterior border of the medial epicondyle of the femur bone before passing laterally to lie on the anterior surface of the thigh. It then enters an opening in the fascia lata called the saphenous opening and joins with the femoral vein in the region of the femoral triangle at the saphenofemoral junction. The long saphenous vein has several tributaries, including the medial marginal, superficial epigastric, superficial iliac circumflex, and superficial external pudendal veins.
On the other hand, the short saphenous vein originates at the fifth digit where the dorsal vein merges with the dorsal venous arch of the foot, which attaches to the great saphenous vein. It passes around the lateral aspect of the foot and runs along the posterior aspect of the leg with the sural nerve. It then passes between the heads of the gastrocnemius muscle and drains into the popliteal vein, approximately at or above the level of the knee joint.
Understanding the anatomy of saphenous veins is crucial for medical professionals who perform surgeries or treatments involving these veins.
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This question is part of the following fields:
- Cardiovascular System
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Question 50
Incorrect
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A 50-year old male visits the endocrinology clinic for a pituitary tumour diagnosis. He needs to undergo a transsphenoidal surgery to remove the pituitary gland. How is the pituitary gland connected to the brain to ensure the transportation of pituitary hormones?
Your Answer: Rathke's pouch
Correct Answer: Pituitary portal system
Explanation:The endocrine system is primarily regulated by the pituitary gland, which is itself controlled by the hypothalamus. The neurohypophysis is influenced by the hypothalamus because its cell bodies are located within the hypothalamus, while the adenohypophysis is regulated by neuroendocrine cells in the hypothalamus that release trophic hormones into the pituitary portal vessels. The pituitary gland subsequently secretes various hormones that impact different parts of the body.
The pituitary gland is a small gland located within the sella turcica in the sphenoid bone of the middle cranial fossa. It weighs approximately 0.5g and is covered by a dural fold. The gland is attached to the hypothalamus by the infundibulum and receives hormonal stimuli from the hypothalamus through the hypothalamo-pituitary portal system. The anterior pituitary, which develops from a depression in the wall of the pharynx known as Rathkes pouch, secretes hormones such as ACTH, TSH, FSH, LH, GH, and prolactin. GH and prolactin are secreted by acidophilic cells, while ACTH, TSH, FSH, and LH are secreted by basophilic cells. On the other hand, the posterior pituitary, which is derived from neuroectoderm, secretes ADH and oxytocin. Both hormones are produced in the hypothalamus before being transported by the hypothalamo-hypophyseal portal system.
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This question is part of the following fields:
- Neurological System
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