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Question 1
Correct
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A 25-year-old man is stabbed in the neck, in the area between the omohyoid and digastric muscles. During surgery to explore the injury, a nerve injury is discovered just above the lingual artery where it branches off from the external carotid artery. What is the most probable outcome of this injury?
Your Answer: Paralysis of the ipsilateral side of the tongue
Explanation:The external carotid artery is located posterior to the hypoglossal nerve, while the lingual arterial branch is situated below it. In case of damage to the nerve, the genioglossus, hyoglossus, and styloglossus muscles on the same side will become paralyzed. When the patient is instructed to stick out their tongue, it will deviate towards the affected side.
The Anterior Triangle of the Neck: Boundaries and Contents
The anterior triangle of the neck is a region that is bounded by the anterior border of the sternocleidomastoid muscle, the lower border of the mandible, and the anterior midline. It is further divided into three sub-triangles by the digastric muscle and the omohyoid muscle. The muscular triangle contains the neck strap muscles, while the carotid triangle contains the carotid sheath, which houses the common carotid artery, the vagus nerve, and the internal jugular vein. The submandibular triangle, located below the digastric muscle, contains the submandibular gland, submandibular nodes, facial vessels, hypoglossal nerve, and other structures.
The digastric muscle, which separates the submandibular triangle from the muscular triangle, is innervated by two different nerves. The anterior belly of the digastric muscle is supplied by the mylohyoid nerve, while the posterior belly is supplied by the facial nerve.
Overall, the anterior triangle of the neck is an important anatomical region that contains many vital structures, including blood vessels, nerves, and glands. Understanding the boundaries and contents of this region is essential for medical professionals who work in this area.
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This question is part of the following fields:
- Musculoskeletal System And Skin
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Question 2
Incorrect
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A 29-year-old female has been diagnosed with hyperthyroidism. She is experiencing heat intolerance and is very frightened by her palpitations. The GP prescribes Carbimazole and a second medication to manage the palpitations. Which receptors are being overstimulated by the increased catecholamine effects in this patient, leading to her palpitations?
Your Answer: β2 receptors
Correct Answer: β1 receptors
Explanation:The sensitivity of the body to catecholamines is heightened by thyroid hormones. When catecholamines activate the β1 receptors in the heart, it leads to an elevation in heart rate.
Thyroid disorders are commonly encountered in clinical practice, with hypothyroidism and thyrotoxicosis being the most prevalent. Women are ten times more likely to develop these conditions than men. The thyroid gland is a bi-lobed structure located in the anterior neck and is part of a hypothalamus-pituitary-end organ system that regulates the production of thyroxine and triiodothyronine hormones. These hormones help regulate energy sources, protein synthesis, and the body’s sensitivity to other hormones. Hypothyroidism can be primary or secondary, while thyrotoxicosis is mostly primary. Autoimmunity is the leading cause of thyroid problems in the developed world.
Thyroid disorders can present in various ways, with symptoms often being the opposite depending on whether the thyroid gland is under or overactive. For example, hypothyroidism may result in weight gain, while thyrotoxicosis leads to weight loss. Thyroid function tests are the primary investigation for diagnosing thyroid disorders. These tests primarily look at serum TSH and T4 levels, with T3 being measured in specific cases. TSH levels are more sensitive than T4 levels for monitoring patients with existing thyroid problems.
Treatment for thyroid disorders depends on the cause. Patients with hypothyroidism are given levothyroxine to replace the underlying deficiency. Patients with thyrotoxicosis may be treated with propranolol to control symptoms such as tremors, carbimazole to reduce thyroid hormone production, or radioiodine treatment.
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This question is part of the following fields:
- Endocrine System
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Question 3
Correct
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A 32-year-old woman is 24 weeks pregnant and comes in for a routine check-up. She expresses her worries about how her pregnancy might impact her renal function, given her history of autosomal dominant polycystic kidney disease. Her baseline eGFR is 100 ml/min/1.73m2. What is the expected eGFR measurement at present?
Your Answer: 150ml/min/1.73m2
Explanation:During pregnancy, a woman’s body undergoes various physiological changes. The cardiovascular system experiences an increase in stroke volume, heart rate, and cardiac output, while systolic blood pressure remains unchanged and diastolic blood pressure decreases in the first and second trimesters before returning to normal levels by term. The enlarged uterus may cause issues with venous return, leading to ankle swelling, supine hypotension, and varicose veins.
The respiratory system sees an increase in pulmonary ventilation and tidal volume, with oxygen requirements only increasing by 20%. This can lead to a sense of dyspnea due to over-breathing and a fall in pCO2. The basal metabolic rate also increases, potentially due to increased thyroxine and adrenocortical hormones.
Maternal blood volume increases by 30%, with red blood cells increasing by 20% and plasma increasing by 50%, leading to a decrease in hemoglobin levels. Coagulant activity increases slightly, while fibrinolytic activity decreases. Platelet count falls, and white blood cell count and erythrocyte sedimentation rate rise.
The urinary system experiences an increase in blood flow and glomerular filtration rate, with elevated sex steroid levels leading to increased salt and water reabsorption and urinary protein losses. Trace glycosuria may also occur.
Calcium requirements increase during pregnancy, with gut absorption increasing substantially due to increased 1,25 dihydroxy vitamin D. Serum levels of calcium and phosphate may fall, but ionized calcium levels remain stable. The liver experiences an increase in alkaline phosphatase and a decrease in albumin levels.
The uterus undergoes significant changes, increasing in weight from 100g to 1100g and transitioning from hyperplasia to hypertrophy. Cervical ectropion and discharge may increase, and Braxton-Hicks contractions may occur in late pregnancy. Retroversion may lead to retention in the first trimester but usually self-corrects.
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This question is part of the following fields:
- Reproductive System
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Question 4
Incorrect
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Which enzyme is likely to be dysfunctional in patients with chronic granulomatous disease, resulting in their inability to efficiently eliminate bacteria after ingestion by macrophages?
Your Answer: Terminal deoxynucleotidyl transferase (TDT)
Correct Answer: NADPH oxidase
Explanation:Granulocyte Bacterial Killing Mechanisms
Granulocytes have a unique way of killing bacteria. Although it is a rare condition, it exemplifies the bacterial killing mechanisms of granulocytes. Once a bacterium is ingested, granulocytes fuse the phagosome with lysosomes that contain proteolytic enzymes. Additionally, they produce oxygen radicals (O2-) that can react with nitric oxide (forming ONOO-), both of which are harmful to bacteria. This process is known as the respiratory burst and utilises the enzyme NADPH oxidase. Patients who have a loss of function of NADPH oxidase are unable to effectively kill bacteria, which leads to the formation of granulomas, sealing off the infection. These patients are immunosuppressed.
In contrast, a C5-convertase is a complex of proteins involved in the complement cascade. Carbonic anhydrase catalyses the formation of carbonic acid from water and CO2. Lactate dehydrogenase converts pyruvate into lactic acid. TDT is an enzyme that is used to insert mutations into somatic DNA during the formation of the B cell and T cell receptor. Each of these processes has a unique function in the body, but the granulocyte bacterial killing mechanism is particularly fascinating due to its ability to effectively combat bacterial infections.
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This question is part of the following fields:
- Clinical Sciences
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Question 5
Correct
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Regarding the middle cranial fossa, which of the following statements about the foramina is inaccurate?
Your Answer: The foramen ovale transmits the middle meningeal artery
Explanation:The middle meningeal artery passes through the foramen spinosum, while the mandibular nerve passes through the foramen ovale. Due to the weakening of the bone at these foramina, fractures in this area are frequent.
Foramina of the Base of the Skull
The base of the skull contains several openings called foramina, which allow for the passage of nerves, blood vessels, and other structures. The foramen ovale, located in the sphenoid bone, contains the mandibular nerve, otic ganglion, accessory meningeal artery, and emissary veins. The foramen spinosum, also in the sphenoid bone, contains the middle meningeal artery and meningeal branch of the mandibular nerve. The foramen rotundum, also in the sphenoid bone, contains the maxillary nerve.
The foramen lacerum, located in the sphenoid bone, is initially occluded by a cartilaginous plug and contains the internal carotid artery, nerve and artery of the pterygoid canal, and the base of the medial pterygoid plate. The jugular foramen, located in the temporal bone, contains the inferior petrosal sinus, glossopharyngeal, vagus, and accessory nerves, sigmoid sinus, and meningeal branches from the occipital and ascending pharyngeal arteries.
The foramen magnum, located in the occipital bone, contains the anterior and posterior spinal arteries, vertebral arteries, and medulla oblongata. The stylomastoid foramen, located in the temporal bone, contains the stylomastoid artery and facial nerve. Finally, the superior orbital fissure, located in the sphenoid bone, contains the oculomotor nerve, recurrent meningeal artery, trochlear nerve, lacrimal, frontal, and nasociliary branches of the ophthalmic nerve, and abducent nerve.
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This question is part of the following fields:
- Neurological System
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Question 6
Incorrect
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Which of these nerves passes through the greater and lesser sciatic foramina?
Your Answer: Sciatic nerve
Correct Answer: Pudendal nerve
Explanation:The structures passing through the lesser and greater sciatic foramina, from medial to lateral, are the pudendal nerve, internal pudendal artery, and nerve to obturator internus. The pudendal nerve originates from the ventral rami of the second, third, and fourth sacral nerves and passes through the greater sciatic foramen before crossing the spine of the ischium and reentering the pelvis through the lesser sciatic foramen. It gives off the inferior rectal nerves and terminates into the perineal nerve and the dorsal nerve of the penis or clitoris.
The Greater Sciatic Foramen and its Contents
The greater sciatic foramen is a space in the pelvis that is bounded by various ligaments and bones. It serves as a passageway for several important structures, including nerves and blood vessels. The piriformis muscle is a landmark for identifying these structures as they pass through the sciatic notch. Above the piriformis muscle, the superior gluteal vessels can be found, while below it are the inferior gluteal vessels, the sciatic nerve (which passes through it in only 10% of cases), and the posterior cutaneous nerve of the thigh.
The boundaries of the greater sciatic foramen include the greater sciatic notch of the ilium, the sacrotuberous ligament, the sacrospinous ligament, and the ischial spine. The anterior sacroiliac ligament forms the superior boundary. Structures passing through the greater sciatic foramen include the pudendal nerve, the internal pudendal artery, and the nerve to the obturator internus.
In contrast, the lesser sciatic foramen is a smaller space that contains the tendon of the obturator internus, the pudendal nerve, the internal pudendal artery and vein, and the nerve to the obturator internus. Understanding the contents and boundaries of these foramina is important for clinicians who may need to access or avoid these structures during surgical procedures or other interventions.
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This question is part of the following fields:
- Musculoskeletal System And Skin
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Question 7
Incorrect
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A 42-year-old man presents after a car accident. He has a posterior dislocation of his right knee but is in stable condition. During a neurological examination of his lower limbs, it is observed that he has a lack of plantarflexion and inversion in his right foot. Which nerve is likely affected?
Your Answer: Common peroneal nerve
Correct Answer: Tibial nerve
Explanation:The tibial nerve is responsible for allowing a patient to plantarflex and invert their foot. Although it is rare for this nerve to be injured due to its location deep within soft tissue, it can be damaged in cases of posterior knee dislocations. When the tibial nerve is affected, the patient will experience a loss of these specific movements.
The common fibular nerve is not the correct answer. This nerve controls muscles in the anterior and lateral compartments of the lower limb, allowing for foot eversion and dorsiflexion. Therefore, if this nerve is damaged, the patient will experience the opposite symptoms of what is described in the scenario.
Similarly, the common peroneal nerve is not the correct answer. This nerve is responsible for foot drop, which is a loss of foot dorsiflexion and eversion. This is the opposite of what the patient in the scenario is experiencing. While it is possible for this nerve to be injured in a posterior knee dislocation, it is more commonly affected in cases of fibular neck fractures.
The femoral nerve is also not the correct answer. This nerve controls knee extension and thigh flexion, but it is not involved in foot movements. Additionally, the course of this nerve does not extend past the knee, so it cannot be damaged by a posterior knee dislocation.
Finally, the obturator nerve is not the correct answer. This nerve is located higher up in the limb and controls thigh adduction. Its course does not extend distally beyond the femoral head, so it cannot be affected by popliteal pathology.
Lower limb anatomy is an important topic that often appears in examinations. One aspect of this topic is the nerves that control motor and sensory functions in the lower limb. The femoral nerve controls knee extension and thigh flexion, and provides sensation to the anterior and medial aspect of the thigh and lower leg. It is commonly injured in cases of hip and pelvic fractures, as well as stab or gunshot wounds. The obturator nerve controls thigh adduction and provides sensation to the medial thigh. It can be injured in cases of anterior hip dislocation. The lateral cutaneous nerve of the thigh provides sensory function to the lateral and posterior surfaces of the thigh, and can be compressed near the ASIS, resulting in a condition called meralgia paraesthetica. The tibial nerve controls foot plantarflexion and inversion, and provides sensation to the sole of the foot. It is not commonly injured as it is deep and well protected, but can be affected by popliteral lacerations or posterior knee dislocation. The common peroneal nerve controls foot dorsiflexion and eversion, and can be injured at the neck of the fibula, resulting in foot drop. The superior gluteal nerve controls hip abduction and can be injured in cases of misplaced intramuscular injection, hip surgery, pelvic fracture, or posterior hip dislocation. Injury to this nerve can result in a positive Trendelenburg sign. The inferior gluteal nerve controls hip extension and lateral rotation, and is generally injured in association with the sciatic nerve. Injury to this nerve can result in difficulty rising from a seated position, as well as difficulty jumping or climbing stairs.
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This question is part of the following fields:
- Musculoskeletal System And Skin
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Question 8
Incorrect
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Sophie is a 5-year-old girl who has presented with a complicated urinary tract infection. She has been treated with the most appropriate antibiotic for 72-hours now and there is no improvement.
What is the appropriate action to take regarding an ultrasound scan?Your Answer: He will need an ultrasound scan in the next 6 weeks, but not during the infection
Correct Answer: He will need an ultrasound scan during the course of the infection
Explanation:According to NICE guidelines, an ultrasound scan should be performed on all children who present with a UTI and abnormal features during the acute phase of the infection. This is particularly important in cases of complicated UTIs, where there is no improvement in symptoms after 72 hours of appropriate treatment. It is crucial to perform the ultrasound scan during the infection rather than waiting for six weeks, as there could be underlying issues that need to be addressed. It is important to note that the need for an ultrasound scan should not compromise the need for further urine sampling or a change in antibiotics. Additionally, an ultrasound scan is a non-invasive procedure that poses no direct risk of infection and will not exacerbate the UTI.
Urinary tract infections (UTIs) in children require investigation to identify any underlying causes and potential kidney damage. Unlike in adults, the development of a UTI in childhood may indicate renal scarring. The National Institute for Health and Care Excellence (NICE) recommends imaging the urinary tract for infants under six months who present with their first UTI and respond to treatment, within six weeks. Children over six months who respond to treatment do not require imaging unless there are features suggestive of an atypical infection, such as being seriously ill, having poor urine flow, an abdominal or bladder mass, raised creatinine, septicaemia, failure to respond to antibiotics within 48 hours, or infection with non-E. coli organisms.
Further investigations may include a urine microscopy and culture, as only 50% of children with a UTI have pyuria, making microscopy or dipstick of the urine inadequate for diagnosis. A static radioisotope scan, such as DMSA, can identify renal scars and should be done 4-6 months after the initial infection. Micturating cystourethrography (MCUG) can identify vesicoureteral reflux and is only recommended for infants under six months who present with atypical or recurrent infections.
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This question is part of the following fields:
- General Principles
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Question 9
Correct
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Which one of the following is not a major function of the spleen in adults?
Your Answer: Storage red blood cells
Explanation:The primary function of the spleen is the removal of old or damaged red blood cells from circulation, which helps to maintain the health of the red cell mass. The other functions of the spleen are also important, but this is the main function.
The Anatomy and Function of the Spleen
The spleen is an organ located in the left upper quadrant of the abdomen. Its size can vary depending on the amount of blood it contains, but the typical adult spleen is 12.5cm long and 7.5cm wide, with a weight of 150g. The spleen is almost entirely covered by peritoneum and is separated from the 9th, 10th, and 11th ribs by both diaphragm and pleural cavity. Its shape is influenced by the state of the colon and stomach, with gastric distension causing it to resemble an orange segment and colonic distension causing it to become more tetrahedral.
The spleen has two folds of peritoneum that connect it to the posterior abdominal wall and stomach: the lienorenal ligament and gastrosplenic ligament. The lienorenal ligament contains the splenic vessels, while the short gastric and left gastroepiploic branches of the splenic artery pass through the layers of the gastrosplenic ligament. The spleen is in contact with the phrenicocolic ligament laterally.
The spleen has two main functions: filtration and immunity. It filters abnormal blood cells and foreign bodies such as bacteria, and produces properdin and tuftsin, which help target fungi and bacteria for phagocytosis. The spleen also stores 40% of platelets, reutilizes iron, and stores monocytes. Disorders of the spleen include massive splenomegaly, myelofibrosis, chronic myeloid leukemia, visceral leishmaniasis, malaria, Gaucher’s syndrome, portal hypertension, lymphoproliferative disease, haemolytic anaemia, infection, infective endocarditis, sickle-cell, thalassaemia, and rheumatoid arthritis.
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This question is part of the following fields:
- Haematology And Oncology
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Question 10
Incorrect
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Which of the structures listed below overlies the cephalic vein?
Your Answer: Bicipital aponeurosis
Correct Answer: None of the above
Explanation:The cephalic vein is a superficial vein in the upper limb that runs over the fascial planes and terminates in the axillary vein after piercing the coracoid membrane. It is located anterolaterally to the biceps.
The Cephalic Vein: Path and Connections
The cephalic vein is a major blood vessel that runs along the lateral side of the arm. It begins at the dorsal venous arch, which drains blood from the hand and wrist, and travels up the arm, crossing the anatomical snuffbox. At the antecubital fossa, the cephalic vein is connected to the basilic vein by the median cubital vein. This connection is commonly used for blood draws and IV insertions.
After passing through the antecubital fossa, the cephalic vein continues up the arm and pierces the deep fascia of the deltopectoral groove to join the axillary vein. This junction is located near the shoulder and marks the end of the cephalic vein’s path.
Overall, the cephalic vein plays an important role in the circulation of blood in the upper limb. Its connections to other major veins in the arm make it a valuable site for medical procedures, while its path through the deltopectoral groove allows it to contribute to the larger network of veins that drain blood from the upper body.
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This question is part of the following fields:
- Cardiovascular System
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