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Question 1
Incorrect
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Which types of cells have cilia that are capable of movement?
Your Answer: Alveolar type 1 pneumocytes
Correct Answer: Fallopian tube epithelial cells
Explanation:Cilia, Flagella, and Microvilli: Cellular Projections with Unique Functions
Cilia, flagella, and microvilli are cellular projections that serve different functions in various cells. Cilia are hair-like structures made up of microtubules and dynein proteins. They can be either immotile or motile, with immotile cilia used for sensory transduction and attachment to underlying tissues, while motile cilia beat rhythmically to move fluid over the surface of cells or confer motility to cells. Cilia are found in the respiratory tract and Fallopian tube epithelium.
Flagella, on the other hand, are longer projections that are classified as a type of cilium. Spermatozoa have a long flagellum that has a similar internal structure to a cilium but is much longer and is used for motility.
Microvilli are folds of the cell membrane that increase the surface area for absorption. They are found in cells such as ileal enterocytes, which are responsible for nutrient absorption in the small intestine.
In summary, cilia, flagella, and microvilli are cellular projections that serve unique functions in different cells. While cilia can be either immotile or motile, flagella are longer and used for motility, and microvilli increase surface area for absorption.
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This question is part of the following fields:
- Histology
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Question 2
Correct
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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: 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 3
Incorrect
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A 25-year-old male patient complains of sore throat, malaise, and fatigue for the past 5 days. During the examination, a significant peritonsillar abscess is observed. What is the probable causative organism responsible for this infection?
Your Answer: Streptococcus viridans
Correct Answer: Streptococcus pyogenes
Explanation:Streptococcal organisms are the most frequent cause of bacterial tonsillitis, which can lead to quinsy.
Understanding Acute Tonsillitis
Acute tonsillitis is a condition that is characterized by pharyngitis, fever, malaise, and lymphadenopathy. It is caused by bacterial infections in over half of all cases, with Streptococcus pyogenes being the most common organism. The tonsils become swollen and may have yellow or white pustules. It is important to note that infectious mononucleosis may mimic the symptoms of acute tonsillitis.
Treatment for bacterial tonsillitis involves the use of penicillin-type antibiotics. Failure to treat bacterial tonsillitis may result in the formation of a local abscess known as quinsy.
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This question is part of the following fields:
- Respiratory System
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Question 4
Incorrect
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A 13-year-old girl visits your clinic and requests a prescription for the morning after pill. She had unprotected sex with her 12-year-old boyfriend, and the condom they used broke. You determine that there are no medical reasons why she cannot take emergency contraception, and she appears to be Fraser competent. The girl asks you to keep the consultation confidential and not to share it with other healthcare providers. She is visibly distressed by the situation. What should you do next?
Your Answer: As they are both minors you should prescribe emergency contraception but encourage them to discuss their relationship with their parents and arrange follow up with the girl and her boyfriend together. As she is Fraser competent, her request for confidentiality should be respected and the events not discussed with anyone else.
Correct Answer: Discuss the case with the locally designated clinician with responsibility of child protection with a view to arranging a review of the situation by social services. Prescribe emergency contraception.
Explanation:Ethical and Legal Considerations in a Case of Underage Sexual Activity
In a case of underage sexual activity, it is important to consider various ethical and legal principles to make an appropriate decision. The patient’s right to autonomy must be balanced with the potential harm that may arise from a sexual relationship with a very young patient, including the risk of unwanted pregnancy. Additionally, the patient’s right to confidentiality must be weighed against the need to protect her from potential harm.
To ensure that the patient is not subject to sexual abuse, it is necessary to establish the facts of the case. If the patient’s boyfriend is older, breaking confidentiality may be justified on the grounds of public interest and the duty to act in the child’s best interests. Therefore, sharing information with appropriate agencies may be necessary to ensure the patient’s safety.
Emergency contraception should be offered to the patient, and if she is deemed competent, she can consent to receiving this treatment without involving her parents. Pregnancy could result in significant harm to the patient, and offering emergency contraception would be in her best interests.
Overall, it is crucial to consider the ethical and legal implications of underage sexual activity to ensure the patient’s safety and well-being.
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This question is part of the following fields:
- Ethics And Law
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Question 5
Correct
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A 73-year-old retired chemist visits a haemato-oncology clinic to review his recent blood tests. During the consultation, the haematologist explains that the transduction of pro-survival signals from the tumour microenvironment is facilitated by glycoproteins on the cell surface membrane of follicular lymphoma cells. The processing of folded glycoproteins before their expression on the cell surface membrane occurs in several stages. What is the organelle that is involved in the final stage of this process?
Your Answer: Golgi apparatus
Explanation:The Golgi apparatus plays a crucial role in processing folded proteins that are destined for the cell surface membrane. While proteins are initially synthesized at the ribosomes, they must undergo several quality control stages before they can be expressed on the cell surface. The smooth endoplasmic reticulum is responsible for the initial quality control of protein folding, while the Golgi apparatus modifies these proteins before they are transported to the cell surface membrane. Lysosomes, on the other hand, are not involved in the processing of folded proteins, but rather in processes such as apoptosis, recycling of intracellular waste, and phagocytosis. Similarly, cytoplasmic ribosomes are not responsible for post-translational modification, but rather for the initial translation of proteins. While proteins may be synthesized at the rough endoplasmic reticulum, they too must undergo processing by the smooth endoplasmic reticulum and Golgi apparatus before they can be expressed on the cell surface membrane.
I-Cell Disease: A Lysosomal Storage Disease
The Golgi apparatus is responsible for modifying, sorting, and packaging molecules that are meant for cell secretion. However, a defect in N-acetylglucosamine-1-phosphate transferase can cause I-cell disease, also known as inclusion cell disease. This disease results in the failure of the Golgi apparatus to transfer phosphate to mannose residues on specific proteins.
I-cell disease is a type of lysosomal storage disease that can cause a range of clinical features. These include coarse facial features, which are similar to those seen in Hurler syndrome. Restricted joint movement, clouding of the cornea, and hepatosplenomegaly are also common symptoms. Despite its rarity, I-cell disease can have a significant impact on affected individuals and their families.
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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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Which of the following muscles is not innervated by the ansa cervicalis?
Your Answer: Sternothyroid
Correct Answer: Mylohyoid
Explanation:The muscles of the ansa cervicalis are: GenioHyoid, ThyroidHyoid, Superior Omohyoid, SternoThyroid, SternoHyoid, and Inferior Omohyoid. The mylohyoid muscle is innervated by the mylohyoid branch of the inferior alveolar nerve. A mnemonic to remember these muscles is GHost THought SOmeone Stupid Shot Irene.
The ansa cervicalis is a nerve that provides innervation to the sternohyoid, sternothyroid, and omohyoid muscles. It is composed of two roots: the superior root, which branches off from C1 and is located anterolateral to the carotid sheath, and the inferior root, which is derived from the C2 and C3 roots and passes posterolateral to the internal jugular vein. The inferior root enters the inferior aspect of the strap muscles, which are located in the neck, and should be divided in their upper half when exposing a large goitre. The ansa cervicalis is situated in front of the carotid sheath and is an important nerve for the proper functioning of the neck muscles.
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This question is part of the following fields:
- Respiratory System
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Question 7
Incorrect
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A patient in their 60s is diagnosed with first-degree heart block which is shown on their ECG by an elongated PR interval. The PR interval relates to a particular period in the electrical conductance of the heart.
What factors could lead to a decrease in the PR interval?Your Answer: Decreased conduction velocity of the SA node
Correct Answer: Increased conduction velocity across the AV node
Explanation:An increase in sympathetic activation leads to a faster heart rate by enhancing the conduction velocity of the AV node. The PR interval represents the time between the onset of atrial depolarization (P wave) and the onset of ventricular depolarization (beginning of QRS complex). While atrial conduction occurs at a speed of 1m/s, the AV node only conducts at 0.05m/s. Consequently, the AV node is the limiting factor, and a reduction in the PR interval is determined by the conduction velocity across the AV node.
Understanding the Cardiac Action Potential and Conduction Velocity
The cardiac action potential is a series of electrical events that occur in the heart during each heartbeat. It is responsible for the contraction of the heart muscle and the pumping of blood throughout the body. The action potential is divided into five phases, each with a specific mechanism. The first phase is rapid depolarization, which is caused by the influx of sodium ions. The second phase is early repolarization, which is caused by the efflux of potassium ions. The third phase is the plateau phase, which is caused by the slow influx of calcium ions. The fourth phase is final repolarization, which is caused by the efflux of potassium ions. The final phase is the restoration of ionic concentrations, which is achieved by the Na+/K+ ATPase pump.
Conduction velocity is the speed at which the electrical signal travels through the heart. The speed varies depending on the location of the signal. Atrial conduction spreads along ordinary atrial myocardial fibers at a speed of 1 m/sec. AV node conduction is much slower, at 0.05 m/sec. Ventricular conduction is the fastest in the heart, achieved by the large diameter of the Purkinje fibers, which can achieve velocities of 2-4 m/sec. This allows for a rapid and coordinated contraction of the ventricles, which is essential for the proper functioning of the heart. Understanding the cardiac action potential and conduction velocity is crucial for diagnosing and treating heart conditions.
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This question is part of the following fields:
- Cardiovascular System
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Question 8
Incorrect
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A 35-year-old woman has been in a car accident at high speed, and there is a suspicion of diaphragmatic injury. Can you indicate at which level the aorta would be expected to traverse the diaphragm?
Your Answer: T9
Correct Answer: T12
Explanation:The Diaphragm’s Openings and What Passes Through Them
The diaphragm, a dome-shaped muscle that separates the chest cavity from the abdominal cavity, has several openings that allow for the passage of important structures. At the T12 level, there is the aortic opening, which transmits the aorta, thoracic duct, and azygous vein. This opening is located towards the back of the diaphragm.
Moving up towards the front of the diaphragm, we find the oesophageal opening at the T10 level. This opening allows for the passage of the oesophagus and vagus nerves, which are important for digestion and communication between the brain and various organs. Finally, at the T8 level, there is the caval opening, which transmits the vena cava and phrenic nerve branches.
the location and function of these openings is important for medical professionals, as they allow for the proper functioning of the organs and systems that pass through them.
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This question is part of the following fields:
- Clinical Sciences
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Question 9
Incorrect
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During a challenging femoro-popliteal bypass surgery, the surgeon mistakenly applies a clamp on the femoral nerve. The clamp remains in place for a significant portion of the procedure. Upon examination after the operation, the nerve is found to be intact but shows signs of compression. What is the most probable outcome in the coming months?
Your Answer: Normal but delayed neuronal transmission due to disruption of the myelin
Correct Answer: Wallerian degeneration
Explanation:Despite the nerve remaining intact, a neuronal injury can lead to Wallerian degeneration and potentially the formation of neuromas.
Nerve injuries can be classified into three types: neuropraxia, axonotmesis, and neurotmesis. Neuropraxia occurs when the nerve is intact but its electrical conduction is affected. However, full recovery is possible, and autonomic function is preserved. Wallerian degeneration, which is the degeneration of axons distal to the site of injury, does not occur. Axonotmesis, on the other hand, happens when the axon is damaged, but the myelin sheath is preserved, and the connective tissue framework is not affected. Wallerian degeneration occurs in this type of injury. Lastly, neurotmesis is the most severe type of nerve injury, where there is a disruption of the axon, myelin sheath, and surrounding connective tissue. Wallerian degeneration also occurs in this type of injury.
Wallerian degeneration typically begins 24-36 hours following the injury. Axons are excitable before degeneration occurs, and the myelin sheath degenerates and is phagocytosed by tissue macrophages. Neuronal repair may only occur physiologically where nerves are in direct contact. However, nerve regeneration may be hampered when a large defect is present, and it may not occur at all or result in the formation of a neuroma. If nerve regrowth occurs, it typically happens at a rate of 1mm per day.
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This question is part of the following fields:
- Neurological System
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Question 10
Incorrect
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A 54-year-old man comes to the Emergency Department complaining of central chest pain. After a brief history and physical examination, the emergency medicine physician suspects a myocardial infarction. During the examination, the physician detects a 4th heart sound. What is the underlying reason for a 4th heart sound?
Your Answer: Mitral regurgitation
Correct Answer: Forceful atrial contraction
Explanation:S4 occurs late in diastole and is caused by the atria contracting forcefully to compensate for a stiff ventricle. It is commonly observed in patients with heart failure. In contrast, S3 occurs earlier in diastole and is caused by rapid blood flow into the ventricle.
A pericardial effusion can produce a rubbing sound when the pericardium is examined. A systolic murmur may be caused by a ventricular septal defect, while a diastolic murmur may be caused by mitral regurgitation.
Heart sounds are the sounds produced by the heart during its normal functioning. The first heart sound (S1) is caused by the closure of the mitral and tricuspid valves, while the second heart sound (S2) is due to the closure of the aortic and pulmonary valves. The intensity of these sounds can vary depending on the condition of the valves and the heart. The third heart sound (S3) is caused by the diastolic filling of the ventricle and is considered normal in young individuals. However, it may indicate left ventricular failure, constrictive pericarditis, or mitral regurgitation in older individuals. The fourth heart sound (S4) may be heard in conditions such as aortic stenosis, HOCM, and hypertension, and is caused by atrial contraction against a stiff ventricle. The different valves can be best heard at specific sites on the chest wall, such as the left second intercostal space for the pulmonary valve and the right second intercostal space for the aortic valve.
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This question is part of the following fields:
- Cardiovascular System
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Question 11
Incorrect
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A 58-year-old American sheep farmer comes to an outpatient liver ultrasound as part of a work-up for suspected non-alcoholic fatty liver disease. He initially visited his primary care physician (PCP) with mild abdominal tenderness and occasional nausea and vomiting. The ultrasound report shows septated cysts with 'multiple anechoic areas, echogenic material between cysts, and evidence of a double echogenic shadow (likely due to pericyst presence)' and suggests a possible differential diagnosis of hydatid disease.
Which of the listed organisms is the probable cause of this farmer's condition?Your Answer: Plasmodium vivax
Correct Answer: Echinococcus granulosus
Explanation:A sheep farmer has been diagnosed with hepatic cysts on ultrasound, which is caused by Echinococcus granulosus tapeworms. This zoonotic disease is a significant public health concern, with over 1 million people affected at any given time. The tapeworm is transmitted through intermediate and definitive hosts, with herbivorous and omnivorous animals acting as intermediate hosts and carnivores as definitive hosts. Humans can become infected through close contact with intermediate hosts.
Hydatid disease can be asymptomatic for years until cysts grow and cause clinical signs, such as abdominal pain, nausea, and vomiting. Ultrasound imaging is the preferred diagnostic tool, with CT and MRI scans used as complementary tests.
In HIV patients, Cryptococcus neoformans is the most common CNS fungal infection, which is managed with IV amphotericin B and flucytosine for 2 weeks, followed by oral fluconazole for 8 weeks.
Enterobius vermicularis, also known as pinworm, is a common parasitic infection in children that causes itching in the perianal region. Symptomatic patients and anyone living in the same residence should be treated with mebendazole due to the high transmission rates.
Malaria, caused by Plasmodium vivax, is transmitted through mosquito bites and can lead to flu-like symptoms, such as chills, fever, and headache. If left untreated, it can cause metabolic acidosis, respiratory distress syndrome, raised intracranial pressure, and multi-organ failure.
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 12
Incorrect
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A 32-year-old woman arrives at the emergency department with a sudden and severe headache, describing it as the worst she has ever experienced. She has a medical history of hypertension and polycystic kidney disease (PKD). The emergency physician diagnoses a subarachnoid hemorrhage, which is a common complication of her PKD.
What is the gold standard investigation for intracranial vascular disease?Your Answer: Contrast CT of the head
Correct Answer: Cerebral angiography
Explanation:The gold standard investigation for intracranial vascular disease is cerebral angiography, which can diagnose intracranial aneurysms and other vascular diseases by visualizing arteries and veins using contrast dye injected into the bloodstream. This technique can also create 3-D reconstructed images that allow for a comprehensive view of the cerebral vessels and accompanying pathology from all angles.
Individuals with PKD are at an increased risk of cerebral aneurysms, which can lead to subarachnoid hemorrhages.
Flow-Sensitive MRI (FS MRI) is a useful tool that combines functional MRI with images of cerebrospinal fluid (CSF) flow. It can aid in planning the surgical removal of skull base tumors, spinal cord tumors, or tumors causing hydrocephalus.
While contrast and non-contrast CT scans are commonly used as the first line of investigation for intracranial lesions, they are not the gold standard and are superseded by cerebral angiography.
Understanding Cerebral Blood Flow and Angiography
Cerebral blood flow is regulated by the central nervous system, which can adjust its own blood supply. Various factors can affect cerebral pressure, including CNS metabolism, trauma, pressure, and systemic carbon dioxide levels. The most potent mediator is PaCO2, while acidosis and hypoxemia can also increase cerebral blood flow to a lesser degree. In patients with head injuries, increased intracranial pressure can impair blood flow. The Monro-Kelly Doctrine governs intracerebral pressure, which considers the brain as a closed box, and changes in pressure are offset by the loss of cerebrospinal fluid. However, when this is no longer possible, intracranial pressure rises.
Cerebral angiography is an invasive test that involves injecting contrast media into the carotid artery using a catheter. Radiographs are taken as the dye works its way through the cerebral circulation. This test can be used to identify bleeding aneurysms, vasospasm, and arteriovenous malformations, as well as differentiate embolism from large artery thrombosis. Understanding cerebral blood flow and angiography is crucial in diagnosing and treating various neurological conditions.
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This question is part of the following fields:
- Cardiovascular System
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Question 13
Incorrect
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A teenage girl is hospitalized for a gynaecological infection and is given a prescription for a cephalosporin antibiotic. Can you explain the mechanism of action for this class of antibiotics and its related categories?
Your Answer: Bacterial folate metabolism inhibition
Correct Answer: Bacterial cell wall synthesis inhibition
Explanation:The mechanism of action of beta-lactam antibiotics involves the inhibition of cell wall synthesis. Cephalosporins, along with penicillins and carbapenems, belong to this class of antibiotics. By preventing the production of peptido-glycan cell walls in bacteria, these antibiotics cause the death of the bacterial cells.
The mechanism of action of antibiotics can be categorized into inhibiting cell wall formation, protein synthesis, DNA synthesis, and RNA synthesis. Beta-lactams such as penicillins and cephalosporins inhibit cell wall formation by blocking cross-linking of peptidoglycan cell walls. Antibiotics that inhibit protein synthesis include aminoglycosides, chloramphenicol, macrolides, tetracyclines, and fusidic acid. Quinolones, metronidazole, sulphonamides, and trimethoprim inhibit DNA synthesis, while rifampicin inhibits RNA synthesis.
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This question is part of the following fields:
- General Principles
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Question 14
Correct
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A 72-year-old male has unfortunately been diagnosed with lung cancer after a brief illness during which he visited his GP with a cough and loss of weight. The GP has received the histology report after a recent bronchoscopy, which revealed a squamous cell carcinoma. What symptoms would you anticipate in this patient based on the diagnosis?
Your Answer: Clubbing
Explanation:Hypertrophic pulmonary osteoarthropathy (HPOA) is linked to squamous cell carcinoma, while small cell carcinoma of the lung is associated with excessive secretion of ADH and may also cause hypertension, hyperglycemia, and hypokalemia due to excessive ACTH secretion (although this is not typical). Lambert-Eaton syndrome is also linked to small cell carcinoma, while adenocarcinoma of the lung is associated with gynecomastia.
Lung cancer can present with paraneoplastic features, which are symptoms caused by the cancer but not directly related to the tumor itself. Small cell lung cancer can cause the secretion of ADH and, less commonly, ACTH, which can lead to hypertension, hyperglycemia, hypokalemia, alkalosis, and muscle weakness. Lambert-Eaton syndrome is also associated with small cell lung cancer. Squamous cell lung cancer can cause the secretion of parathyroid hormone-related protein, leading to hypercalcemia, as well as clubbing and hypertrophic pulmonary osteoarthropathy. Adenocarcinoma can cause gynecomastia and hypertrophic pulmonary osteoarthropathy. Hypertrophic pulmonary osteoarthropathy is a painful condition involving the proliferation of periosteum in the long bones. Although traditionally associated with squamous cell carcinoma, some studies suggest that adenocarcinoma is the most common cause.
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This question is part of the following fields:
- Respiratory System
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Question 15
Incorrect
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A 78-year-old man is diagnosed with a vitamin B1 deficiency. What food is known to be a rich source of thiamine?
Your Answer: Broccoli
Correct Answer: Wheat germ
Explanation:Thiamine Deficiency and Dietary Sources
Thiamine, also known as vitamin B1, is an essential nutrient that the body cannot store in large amounts and must be obtained through the diet. Wholegrain cereals, oatmeal, yeast, pork, sunflower seeds, and certain vegetables such as potatoes, asparagus, and cauliflower are good dietary sources of thiamine. However, refined cereals and white flour typically contain low levels of thiamine, and processing, boiling, and overcooking vegetables can remove a significant amount of the vitamin.
Thiamine plays a crucial role in energy production, nervous transmission, and collagen synthesis. A deficiency in thiamine can lead to impairment of these processes, resulting in various signs and symptoms such as muscle tenderness, weakness, and reduced reflexes, confusion, memory impairment, impaired wound healing, poor balance, falls, constipation, and reduced appetite. Therefore, it is important to ensure adequate intake of thiamine through a balanced diet to prevent deficiency and maintain optimal health.
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This question is part of the following fields:
- Clinical Sciences
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Question 16
Incorrect
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A 65-year-old man visits the haemofiltration unit thrice a week for treatment. What is responsible for detecting alterations in salt concentrations, such as sodium chloride, in normally functioning kidneys and adjusting the glomerular filtration rate accordingly?
Your Answer: Juxtaglomerular cells
Correct Answer: Macula densa
Explanation:The macula densa is a specialized area of columnar tubule cells located in the final part of the ascending loop of Henle. These cells are in contact with the afferent arteriole and play a crucial role in detecting the concentration of sodium chloride in the convoluted tubules and ascending loop of Henle. This detection is affected by the glomerular filtration rate (GFR), which is increased by an increase in blood pressure. When the macula densa detects high sodium chloride levels, it releases ATP and adenosine, which constrict the afferent arteriole and lower GFR. Conversely, when low sodium chloride levels are detected, the macula densa releases nitric oxide, which acts as a vasodilator. The macula densa can also increase renin production from the juxtaglomerular cells.
Juxtaglomerular cells are smooth muscle cells located mainly in the walls of the afferent arteriole. They act as baroreceptors to detect changes in blood pressure and can secrete renin.
Mesangial cells are located at the junction of the afferent and efferent arterioles and, together with the juxtaglomerular cells and the macula densa, form the juxtaglomerular apparatus.
Podocytes, which are modified simple squamous epithelial cells with foot-like projections, make up the innermost layer of the Bowman’s capsule surrounding the glomerular capillaries. They assist in glomerular filtration.
The Loop of Henle and its Role in Renal Physiology
The Loop of Henle is a crucial component of the renal system, located in the juxtamedullary nephrons and running deep into the medulla. Approximately 60 litres of water containing 9000 mmol sodium enters the descending limb of the loop of Henle in 24 hours. The osmolarity of fluid changes and is greatest at the tip of the papilla. The thin ascending limb is impermeable to water, but highly permeable to sodium and chloride ions. This loss means that at the beginning of the thick ascending limb the fluid is hypo osmotic compared with adjacent interstitial fluid. In the thick ascending limb, the reabsorption of sodium and chloride ions occurs by both facilitated and passive diffusion pathways. The loops of Henle are co-located with vasa recta, which have similar solute compositions to the surrounding extracellular fluid, preventing the diffusion and subsequent removal of this hypertonic fluid. The energy-dependent reabsorption of sodium and chloride in the thick ascending limb helps to maintain this osmotic gradient. Overall, the Loop of Henle plays a crucial role in regulating the concentration of solutes in the renal system.
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This question is part of the following fields:
- Renal System
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Question 17
Incorrect
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A 28-year-old male patient is diagnosed with an inguinal hernia and is scheduled for open surgical repair. During the procedure, the surgeons opt to use a mesh to reinforce the posterior wall of the inguinal canal. What structures will be located behind the mesh?
Your Answer: External oblique
Correct Answer: Transversalis fascia
Explanation:The posterior wall of the inguinal canal is formed by the transversalis fascia, the conjoint tendon, and the deep inguinal ring located laterally. The superior wall (roof) is made up of the internal oblique and transversus abdominis muscles, while the anterior wall consists of the aponeurosis of the external oblique and internal oblique muscles. The lower wall (floor) is formed by the inguinal ligament and lacunar ligament.
The inguinal canal is located above the inguinal ligament and measures 4 cm in length. Its superficial ring is situated in front of the pubic tubercle, while the deep ring is found about 1.5-2 cm above the halfway point between the anterior superior iliac spine and the pubic tubercle. The canal is bounded by the external oblique aponeurosis, inguinal ligament, lacunar ligament, internal oblique, transversus abdominis, external ring, and conjoint tendon. In males, the canal contains the spermatic cord and ilioinguinal nerve, while in females, it houses the round ligament of the uterus and ilioinguinal nerve.
The boundaries of Hesselbach’s triangle, which are frequently tested, are located in the inguinal region. Additionally, the inguinal canal is closely related to the vessels of the lower limb, which should be taken into account when repairing hernial defects in this area.
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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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What is a frequent reason for mortality in individuals with severe malnutrition?
Your Answer: Renal failure
Correct Answer: Infection
Explanation:The Deadly Consequences of Severe Malnutrition
Severe malnutrition is a widespread problem that affects millions of people worldwide. It is responsible for approximately 50% of deaths in childhood and infancy. One of the most common causes of death in malnourished individuals is severe infection. Malnutrition weakens the immune system, making it more difficult for the body to fight off infections. This is especially true for those living in poverty, with poor access to food, and in areas affected by famine, war, or conflict. These conditions often lead to poor water sanitation, disrupted infrastructure for sewerage, and close living quarters, which increase the likelihood of infection.
In addition to infections, arrhythmias are also a significant cause of death in people with severe malnutrition. Malnutrition often leads to hypokalaemia, a condition where there is a low level of potassium in the blood. Refeeding a malnourished person can worsen this electrolyte disturbance, creating an arrhythmogenic environment that can be fatal.
In conclusion, severe malnutrition has deadly consequences, with severe infection and arrhythmias being the leading causes of death. Addressing the root causes of malnutrition, such as poverty and poor access to food, is crucial in preventing these tragic outcomes.
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This question is part of the following fields:
- Clinical Sciences
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Question 19
Incorrect
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From which of the following cell types do giant cells typically arise?
Your Answer: Goblet cells
Correct Answer: Macrophages
Explanation:Macrophages are still the most frequent cell type that can generate giant cells, despite the possibility of other cell types doing so.
Giant cells are masses that result from the fusion of various types of cells. Typically, these masses are composed of macrophages. It is important to note that giant cells are not the same as granulomas, although the agents that cause them may be similar. In fact, giant cells are often a reaction to foreign materials, such as suture material, and can be seen in histological sections stained with haematoxylin and eosin. Overall, giant cells are a unique phenomenon in cellular biology that can provide insight into the body’s response to foreign substances.
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This question is part of the following fields:
- Haematology And Oncology
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Question 20
Incorrect
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A 78-year-old man arrives at the emergency department with eczema and diarrhoea. His daughter, who accompanies him, reports that he has been experiencing memory loss. Upon conducting blood tests, it is revealed that he is suffering from niacin deficiency. Upon further examination, it is discovered that he has a carcinoid tumour in his appendix. How has this tumour led to his deficiency?
Your Answer: Reduced absorption of niacin
Correct Answer: Increased metabolism of tryptophan causing decreased biosynthesis of niacin
Explanation:The metabolism of tryptophan is increased in carcinoid syndrome, leading to a deficiency of niacin. However, the presence of a tumour in the appendix is unlikely to affect the absorption of niacin. Niacin is produced in the liver from tryptophan, and a decrease in tryptophan availability would result in a reduction of niacin biosynthesis. There is no indication of excessive niacin metabolism or excretion.
The Importance of Vitamin B3 (Niacin) in the Body
Vitamin B3, also known as niacin, is a type of water-soluble vitamin that belongs to the B complex group. It is a crucial nutrient that serves as a precursor to NAD+ and NADP+, which are essential for various metabolic processes in the body. Niacin is synthesized in the body from tryptophan, an amino acid found in protein-rich foods. However, certain conditions such as Hartnup’s disease and carcinoid syndrome can reduce the absorption of tryptophan or increase its metabolism to serotonin, leading to niacin deficiency.
Niacin deficiency can result in a condition called pellagra, which is characterized by a triad of symptoms: dermatitis, diarrhea, and dementia. Pellagra is a serious condition that can lead to severe health complications if left untreated. Therefore, it is important to ensure that you are getting enough niacin in your diet or through supplements to maintain optimal health and prevent the risk of niacin deficiency.
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This question is part of the following fields:
- General Principles
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Question 21
Incorrect
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A couple in their late 20s comes to your clinic seeking advice regarding the possibility of their children inheriting cystic fibrosis. The husband has a confirmed diagnosis of the condition, but the carrier status of the wife is unknown.
What is the likelihood of any of their offspring being affected by cystic fibrosis?Your Answer: 25%
Correct Answer: 2.50%
Explanation:Cystic Fibrosis Inheritance
Cystic fibrosis (CF) is a genetic disorder that affects the chloride ion channels, leading to the thickening of respiratory and other secretions. It is an autosomal recessive condition, which means that a person must inherit two copies of the defective gene, one from each parent, to develop the disease. The most common defective allele is carried by approximately 1 in 20 people.
If a man with CF has children with a woman who does not carry the recessive gene, then none of their children will be affected by the disease. However, they will all be carriers of the CF gene. On the other hand, if the woman is a carrier of the CF gene, there is a 50% chance that each child will inherit one copy of the defective gene from each parent and be affected by the disease. The remaining 50% of the children will inherit one copy of the defective gene and one normal gene, making them carriers of the CF gene but not affected by the disease.
In summary, the probability of any child being affected by CF is 2.5% if one parent has the defective gene and the other does not. It is important for individuals who are carriers of the CF gene to be aware of their status and seek genetic counseling before planning to have children.
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This question is part of the following fields:
- Basic Sciences
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Question 22
Correct
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As a medical student working in the emergency department, you come across a 75-year-old man with a medical history of hypertension, dyslipidaemia, and atrial fibrillation. He was brought in by ambulance after collapsing at home. During the examination, you notice that he is unable to raise his right arm and has reduced sensation on the right side of his body. The consultant suspects that the patient is having a stroke and orders an urgent CT head.
Upon reviewing the results, the consultant informs you that there is a significant area of ischaemia affecting the insula, somatosensory cortex, and part of the frontal cortex. Your task is to identify the artery that is most likely to be occluded by an infarct.Your Answer: Left middle cerebral artery
Explanation:The correct blood vessel supplying the frontal, temporal, and parietal lobes is the left middle cerebral artery. This is evident from the patient’s symptoms of right-sided loss of sensation and weakness, which are controlled by the contralateral somatosensory and motor cortex. The other options, such as the anterior spinal artery and the anterior cerebral arteries, are incorrect as they do not supply the brain or the specific areas affected in this patient.
The Circle of Willis is an anastomosis formed by the internal carotid arteries and vertebral arteries on the bottom surface of the brain. It is divided into two halves and is made up of various arteries, including the anterior communicating artery, anterior cerebral artery, internal carotid artery, posterior communicating artery, and posterior cerebral arteries. The circle and its branches supply blood to important areas of the brain, such as the corpus striatum, internal capsule, diencephalon, and midbrain.
The vertebral arteries enter the cranial cavity through the foramen magnum and lie in the subarachnoid space. They then ascend on the anterior surface of the medulla oblongata and unite to form the basilar artery at the base of the pons. The basilar artery has several branches, including the anterior inferior cerebellar artery, labyrinthine artery, pontine arteries, superior cerebellar artery, and posterior cerebral artery.
The internal carotid arteries also have several branches, such as the posterior communicating artery, anterior cerebral artery, middle cerebral artery, and anterior choroid artery. These arteries supply blood to different parts of the brain, including the frontal, temporal, and parietal lobes. Overall, the Circle of Willis and its branches play a crucial role in providing oxygen and nutrients to the brain.
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This question is part of the following fields:
- Cardiovascular System
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Question 23
Incorrect
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A 45-year-old female patient presents to her GP with increasing muscular fatigue, mainly affecting the muscles of face. The fatigue is worse in the evenings or when using the muscle for prolonged periods. She also complains of diplopia and difficulty swallowing. On examination, she has a bilateral, partial ptosis. Tendon reflexes are normal. Her past medical history includes hypothyroidism and pernicious anaemia.
In which area of the mediastinum is the structure likely to have undergone hyperplasia in this patient?Your Answer: Middle inferior mediastinum
Correct Answer: Anterior superior mediastinum
Explanation:The Thymus Gland: Development, Structure, and Function
The thymus gland is an encapsulated organ that develops from the third and fourth pharyngeal pouches. It descends to the anterior superior mediastinum and is subdivided into lobules, each consisting of a cortex and a medulla. The cortex is made up of tightly packed lymphocytes, while the medulla is mostly composed of epithelial cells. Hassall’s corpuscles, which are concentrically arranged medullary epithelial cells that may surround a keratinized center, are also present.
The inferior parathyroid glands, which also develop from the third pharyngeal pouch, may be located with the thymus gland. The thymus gland’s arterial supply comes from the internal mammary artery or pericardiophrenic arteries, while its venous drainage is to the left brachiocephalic vein. The thymus gland plays a crucial role in the development and maturation of T-cells, which are essential for the immune system’s proper functioning.
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This question is part of the following fields:
- Haematology And Oncology
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Question 24
Correct
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A 16-year-old girl visits the clinic with concerns about a possible pregnancy. She is provided with a pregnancy test, which indicates a positive result. From which part of her body would the beta-hCG, detected on the pregnancy test, have been secreted?
Your Answer: The placenta
Explanation:During pregnancy, the placenta produces beta-hCG, which helps to sustain the corpus luteum. This, in turn, continues to secrete progesterone and estrogen throughout the pregnancy to maintain the endometrial lining. Eventually, after 6 weeks of gestation, the placenta takes over the production of progesterone.
Endocrine Changes During Pregnancy
During pregnancy, there are several physiological changes that occur in the body, including endocrine changes. Progesterone, which is produced by the fallopian tubes during the first two weeks of pregnancy, stimulates the secretion of nutrients required by the zygote/blastocyst. At six weeks, the placenta takes over the production of progesterone, which inhibits uterine contractions by decreasing sensitivity to oxytocin and inhibiting the production of prostaglandins. Progesterone also stimulates the development of lobules and alveoli.
Oestrogen, specifically oestriol, is another major hormone produced during pregnancy. It stimulates the growth of the myometrium and the ductal system of the breasts. Prolactin, which increases during pregnancy, initiates and maintains milk secretion of the mammary gland. It is essential for the expression of the mammotropic effects of oestrogen and progesterone. However, oestrogen and progesterone directly antagonize the stimulating effects of prolactin on milk synthesis.
Human chorionic gonadotropin (hCG) is secreted by the syncitiotrophoblast and can be detected within nine days of pregnancy. It mimics LH, rescuing the corpus luteum from degenerating and ensuring early oestrogen and progesterone secretion. It also stimulates the production of relaxin and may inhibit contractions induced by oxytocin. Other hormones produced during pregnancy include relaxin, which suppresses myometrial contractions and relaxes the pelvic ligaments and pubic symphysis, and human placental lactogen (hPL), which has lactogenic actions and enhances protein metabolism while antagonizing insulin.
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This question is part of the following fields:
- Reproductive System
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Question 25
Correct
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An 80-year-old man with symptoms of intermittent claudication needs to have his ankle brachial pressure indices checked. However, the dorsalis pedis artery cannot be felt. What tendinous structure, located medially, could aid in its identification?
Your Answer: Extensor hallucis longus tendon
Explanation:The dorsalis pedis artery is located lateral to the extensor hallucis longus tendon.
The foot has two arches: the longitudinal arch and the transverse arch. The longitudinal arch is higher on the medial side and is supported by the posterior pillar of the calcaneum and the anterior pillar composed of the navicular bone, three cuneiforms, and the medial three metatarsal bones. The transverse arch is located on the anterior part of the tarsus and the posterior part of the metatarsus. The foot has several intertarsal joints, including the sub talar joint, talocalcaneonavicular joint, calcaneocuboid joint, transverse tarsal joint, cuneonavicular joint, intercuneiform joints, and cuneocuboid joint. The foot also has various ligaments, including those of the ankle joint and foot. The foot is innervated by the lateral plantar nerve and medial plantar nerve, and it receives blood supply from the plantar arteries and dorsalis pedis artery. The foot has several muscles, including the abductor hallucis, flexor digitorum brevis, abductor digit minimi, flexor hallucis brevis, adductor hallucis, and extensor digitorum brevis.
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This question is part of the following fields:
- Musculoskeletal System And Skin
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Question 26
Correct
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A 75-year-old woman is scheduled to begin taking warfarin. Prior to starting this medication, her other medications are reviewed for potential contraindications. Is there any medication that should be reconsidered or adjusted before initiating warfarin therapy?
Your Answer: Fluoxetine
Explanation:Before prescribing warfarin to a patient, it is crucial to thoroughly check for potential interactions with other medications. Warfarin is metabolized by cytochrome P450 enzymes in the liver, which means that medications that affect this enzyme system can impact warfarin metabolism.
Certain medications, such as NSAIDs, antibiotics like erythromycin and ciprofloxacin, amiodarone, and SSRIs like fluoxetine, can inhibit cytochrome P450 enzymes and slow down warfarin metabolism, leading to increased effects.
On the other hand, medications like phenytoin, carbamazepine, and rifampicin can induce cytochrome P450 enzymes and speed up warfarin metabolism, resulting in decreased effects.
However, medications like simvastatin, salmeterol, bisoprolol, and losartan do not interfere with warfarin and can be safely prescribed alongside it.
Understanding Warfarin: Mechanism of Action, Indications, Monitoring, Factors, and Side-Effects
Warfarin is an oral anticoagulant that has been widely used for many years to manage venous thromboembolism and reduce stroke risk in patients with atrial fibrillation. However, it has been largely replaced by direct oral anticoagulants (DOACs) due to their ease of use and lack of need for monitoring. Warfarin works by inhibiting epoxide reductase, which prevents the reduction of vitamin K to its active hydroquinone form. This, in turn, affects the carboxylation of clotting factor II, VII, IX, and X, as well as protein C.
Warfarin is indicated for patients with mechanical heart valves, with the target INR depending on the valve type and location. Mitral valves generally require a higher INR than aortic valves. It is also used as a second-line treatment after DOACs for venous thromboembolism and atrial fibrillation, with target INRs of 2.5 and 3.5 for recurrent cases. Patients taking warfarin are monitored using the INR, which may take several days to achieve a stable level. Loading regimes and computer software are often used to adjust the dose.
Factors that may potentiate warfarin include liver disease, P450 enzyme inhibitors, cranberry juice, drugs that displace warfarin from plasma albumin, and NSAIDs that inhibit platelet function. Warfarin may cause side-effects such as haemorrhage, teratogenic effects, skin necrosis, temporary procoagulant state, thrombosis, and purple toes.
In summary, understanding the mechanism of action, indications, monitoring, factors, and side-effects of warfarin is crucial for its safe and effective use in patients. While it has been largely replaced by DOACs, warfarin remains an important treatment option for certain patients.
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This question is part of the following fields:
- Cardiovascular System
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Question 27
Correct
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A 72-year-old retired fisherman presents with a sudden episode of rectal bleeding. The bleeding was significant and included clots. He feels dizzy and has collapsed.
He reports experiencing heartburn regularly and takes lisinopril and bendroflumethiazide for hypertension, as well as aspirin and ibuprofen for hangovers. He drinks six large whisky measures and smokes 10 cigarettes daily.
During examination, he is apyrexial, his heart rate is 106 bpm, blood pressure is 108/74 mmHg, and his respiratory rate is 18. He appears pale and has epigastric tenderness.
What is the immediate action that should be taken?Your Answer: Give 1litre 0.9% NaCl over one hour
Explanation:Urgent Resuscitation Needed for Patient in Hypovolaemic Shock
A patient is experiencing hypovolaemic shock and requires immediate infusion of colloid or crystalloid. Waiting for eight hours is not an option, and dextrose is not recommended as it quickly moves out of the intravascular space. The patient will undergo endoscopy, but only after initial resuscitation. While regular omeprazole may help prevent recurrence, it is not urgent.
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This question is part of the following fields:
- Gastrointestinal System
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Question 28
Incorrect
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A 45-year-old woman, gravida 2 para 1, has been referred to the medical assessment unit by her family physician due to persistent pelvic pain and discomfort with radiation to her lower back, hips and groin. This has significantly impacted her day-to-day activities, family and social life. She has a past medical history of atrial fibrillation and type II diabetes. She is currently 34 weeks into her second pregnancy, and ultrasound scans have reported a fairly large baby. Despite her symptoms, her bladder and bowel function remain normal. Upon assessment, her pulse is 78 beats per minute, blood pressure is 123/78 mmHg, temperature is 37.5ºC, respiratory rate is 16 breaths per minute, and CRP is less than 5 mg/L. What is the most likely cause of her pain?
Your Answer: Cauda equina syndrome
Correct Answer: Pubic symphysis dysfunction
Explanation:During pregnancy, it is common to experience pubic symphysis dysfunction due to increased ligament laxity caused by hormonal changes. This can result in pain over the pubic symphysis that may radiate to the groins and inner thighs. It is important to differentiate this from more serious conditions such as cauda equina syndrome, which is a surgical emergency and presents with low back pain, leg pain, numbness around the anus, and loss of bowel or bladder control. While slipped lumbar vertebrae can also cause similar symptoms, it is less common than pubic symphysis dysfunction during pregnancy. Ultrasound scans can confirm a normal fetus, ruling out ectopic pregnancy and miscarriage as potential causes of the symptoms.
Understanding Symphysis Pubis Dysfunction in Pregnancy
Symphysis pubis dysfunction (SPD), also known as pelvic girdle pain, is a common condition experienced by pregnant women. It is caused by the hormone relaxin, which affects the laxity of ligaments in the pelvic girdle and other parts of the body. This increased laxity can result in pain and instability in the symphysis pubis joint and/or sacroiliac joint. Around 20% of women suffer from SPD by 33 weeks of gestation, and it can occur at any time during pregnancy or in the postnatal period.
Multiple risk factors have been identified, including a previous history of low back pain, multiparity, previous trauma to the back or pelvis, heavy workload, higher levels of stress, and job dissatisfaction. Patients typically present with discomfort and pain in the suprapubic or low back area, which may radiate to the upper thighs and perineum. Pain can range from mild to severe and is often exacerbated by walking, climbing stairs, turning in bed, standing on one leg, or weight-bearing activities.
Physical examination may reveal tenderness of the symphysis pubis and/or sacroiliac joint, pain on hip abduction, pain at the symphysis when standing on one leg, and a waddling gait. Positive Faber and active straight leg raise tests, as well as palpation of the anterior surface of the symphysis pubis, can also indicate SPD. Imaging, such as ultrasound or MRI, is necessary to confirm separation of the symphysis pubis.
Conservative management with physiotherapy is the primary treatment for SPD. Understanding the risk factors and symptoms of SPD can help healthcare providers provide appropriate care and support for pregnant women experiencing this condition.
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This question is part of the following fields:
- Reproductive System
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Question 29
Incorrect
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An 81-year-old male visits his primary care physician with concerns about his medication. He has been diagnosed with Hodgkin's lymphoma and his oncologist has recommended a trial of chemotherapy with doxorubicin.
What is the mechanism of action of doxorubicin?Your Answer: Pyrimidine antagonist
Correct Answer: Inhibits the formation of microtubules
Explanation:Vincristine inhibits the formation of microtubules, which are essential for separating chromosomes during cell division. This mechanism is also shared by paclitaxel, a member of the taxane family. Alkylating agents, such as cyclophosphamide, disrupt the double helix of DNA by adding an alkyl group to guanine bases. Methotrexate inhibits dihydrofolate reductase, an enzyme that supports folate in DNA synthesis. Pyrimidine antagonists, like cytarabine, prevent the use of pyrimidines in DNA synthesis.
Cytotoxic agents are drugs that are used to kill cancer cells. There are several types of cytotoxic agents, each with their own mechanism of action and potential adverse effects. Alkylating agents, such as cyclophosphamide, work by causing cross-linking in DNA. However, they can also cause haemorrhagic cystitis, myelosuppression, and transitional cell carcinoma. Cytotoxic antibiotics, like bleomycin and anthracyclines, degrade preformed DNA and stabilize DNA-topoisomerase II complex, respectively. However, they can also cause lung fibrosis and cardiomyopathy. Antimetabolites, such as methotrexate and fluorouracil, inhibit dihydrofolate reductase and thymidylate synthesis, respectively. However, they can also cause myelosuppression, mucositis, and liver or lung fibrosis. Drugs that act on microtubules, like vincristine and docetaxel, inhibit the formation of microtubules and prevent microtubule depolymerisation & disassembly, respectively. However, they can also cause peripheral neuropathy, myelosuppression, and paralytic ileus. Topoisomerase inhibitors, like irinotecan, inhibit topoisomerase I, which prevents relaxation of supercoiled DNA. However, they can also cause myelosuppression. Other cytotoxic drugs, such as cisplatin and hydroxyurea, cause cross-linking in DNA and inhibit ribonucleotide reductase, respectively. However, they can also cause ototoxicity, peripheral neuropathy, hypomagnesaemia, and myelosuppression.
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This question is part of the following fields:
- Haematology And Oncology
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Question 30
Correct
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A 45-year-old woman is scheduled to have an axillary lymph node dissection as a component of her breast cancer treatment. During the surgical approach to the axilla, which fascial layer will be cut?
Your Answer: Clavipectoral fascia
Explanation:The clavipectoral fascia is located beneath the clavicular part of the pectoralis major muscle and serves as a protective barrier for the axillary vessels and nodes. In cases of breast cancer requiring axillary node clearance, the clavipectoral fascia is incised to allow access to the nodal stations. These stations include level 1 nodes located below the pectoralis minor muscle, level 2 nodes situated behind it, and level 3 nodes above it. In some cases, such as during a Patey Mastectomy, surgeons may need to divide the pectoralis minor muscle to access level 3 nodes. However, with the use of sentinel node biopsy and improved techniques, this procedure is becoming less common.
Anatomy of the Axilla
The axilla, also known as the armpit, is a region of the body that contains important structures such as nerves, veins, and lymph nodes. It is bounded medially by the chest wall and serratus anterior, laterally by the humeral head, and anteriorly by the lateral border of the pectoralis major. The floor of the axilla is formed by the subscapularis muscle, while the clavipectoral fascia forms its fascial boundary.
One of the important nerves that passes through the axilla is the long thoracic nerve, which supplies the serratus anterior muscle. The thoracodorsal nerve and trunk, on the other hand, innervate and vascularize the latissimus dorsi muscle. The axillary vein, which is the continuation of the basilic vein, lies at the apex of the axilla and becomes the subclavian vein at the outer border of the first rib. The intercostobrachial nerves, which provide cutaneous sensation to the axillary skin, traverse the axillary lymph nodes and are often divided during axillary surgery.
The axilla is also an important site of lymphatic drainage for the breast. Therefore, any pathology or surgery involving the breast can affect the lymphatic drainage of the axilla and lead to lymphedema. Understanding the anatomy of the axilla is crucial for healthcare professionals who perform procedures in this region, as damage to any of the structures can lead to significant complications.
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This question is part of the following fields:
- Musculoskeletal System And Skin
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