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Question 1
Incorrect
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A middle-aged woman presents with complaints of profound sadness, marked difficulty concentrating, and an inability to make decisions. During the evaluation, she speaks slowly and struggles to articulate her emotions. How would you characterize the alterations in her cognitive functioning and thought processes?
Your Answer: Thought block
Correct Answer: Psychomotor retardation
Explanation:Psychomotor Retardation in Severe Depression
Psychomotor retardation is a cognitive symptom commonly observed in individuals with severe depression. It is characterized by a significant slowing down of both thinking and behavior. This symptom can manifest in various ways, such as slowed speech, reduced movement, and delayed responses. Psychomotor retardation can significantly impact an individual’s ability to carry out daily activities and can lead to social withdrawal and isolation.
It is essential to differentiate psychomotor retardation from other forms of thought disorders seen in other psychiatric conditions such as mania and schizophrenia. In mania, individuals may experience racing thoughts and increased energy levels, while in schizophrenia, disorganized thinking and speech patterns are common. Therefore, a thorough evaluation by a mental health professional is necessary to accurately diagnose and treat psychomotor retardation in severe depression.
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This question is part of the following fields:
- Psychiatry
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Question 2
Incorrect
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A 55-year-old male complains of central chest pain. During examination, a mitral regurgitation murmur is detected. An ECG reveals ST elevation in leads V1 to V6, but no ST elevation is observed in leads II, III, and aVF. What is the diagnosis?
Your Answer: Inferior myocardial infarct
Correct Answer: Anterior myocardial infarct
Explanation:An anterior MI is the most probable diagnosis, given the absence of ST changes in the inferior leads. Aortic dissection is therefore less probable.
The following table displays the relationship between ECG changes and the affected coronary artery territories. Anteroseptal changes in V1-V4 indicate involvement of the left anterior descending artery, while inferior changes in II, III, and aVF suggest the right coronary artery is affected. Anterolateral changes in V4-6, I, and aVL may indicate involvement of either the left anterior descending or left circumflex artery, while lateral changes in I, aVL, and possibly V5-6 suggest the left circumflex artery is affected. Posterior changes in V1-3 may indicate a posterior infarction, which is typically caused by the left circumflex artery but can also be caused by the right coronary artery. Reciprocal changes of STEMI are often seen as horizontal ST depression, tall R waves, upright T waves, and a dominant R wave in V2. Posterior infarction is confirmed by ST elevation and Q waves in posterior leads (V7-9), usually caused by the left circumflex artery but also possibly the right coronary artery. It is important to note that a new LBBB may indicate acute coronary syndrome.
Diagram showing the correlation between ECG changes and coronary territories in acute coronary syndrome.
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This question is part of the following fields:
- Cardiovascular System
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Question 3
Correct
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A 45-year-old male patient presents with choreiform movements that he is unable to control or cease. During the consultation, you inquire about his family history and discover that his father experienced similar symptoms at a slightly later age. Based on this information, what genetic phenomenon is likely to have taken place between the patient and his father?
Your Answer: Anticipation
Explanation:Anticipation may be observed in Huntington’s disease due to its nature as a trinucleotide repeat disorder. The disease is caused by an autosomal dominant gene with CAG repeats in exon 1 of the Huntingtin gene. The number of CAG repeats is indicative of the severity of the disease, with individuals having 36 to 39 repeats potentially developing symptoms, while those with 40 or more repeats almost always develop the disorder. HD can occur in individuals with 36 to 120 CAG repeats.
Anticipation is observed as the number of CAG repeats increases between generations. Offspring of individuals with 27 to 35 CAG repeats are at risk of developing HD, even though the parent does not suffer from the disease. Additionally, higher numbers of CAG repeats tend to cause HD to manifest at earlier ages, resulting in younger generations being affected by the disease.
Huntington’s disease is a genetic disorder that causes progressive and incurable neurodegeneration. It is inherited in an autosomal dominant manner and is caused by a trinucleotide repeat expansion of CAG in the huntingtin gene on chromosome 4. This can result in the phenomenon of anticipation, where the disease presents at an earlier age in successive generations. The disease leads to the degeneration of cholinergic and GABAergic neurons in the striatum of the basal ganglia, which can cause a range of symptoms.
Typically, symptoms of Huntington’s disease develop after the age of 35 and can include chorea, personality changes such as irritability, apathy, and depression, intellectual impairment, dystonia, and saccadic eye movements. Unfortunately, there is currently no cure for Huntington’s disease, and it usually results in death around 20 years after the initial symptoms develop.
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This question is part of the following fields:
- Neurological System
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Question 4
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A 24-year-old patient with a family history of Li-Fraumeni syndrome comes to your clinic. During the examination, you notice a painful bony lump on the tibial tuberosity. The patient has been experiencing increased fatigue and has lost a significant amount of weight unintentionally. Her mother, who also has the condition, has undergone treatment for breast cancer.
Which gene is affected in this inherited disorder?Your Answer: Tumour protein p53
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 5
Incorrect
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A woman presents with complaints of neck stiffness, photophobia, nausea, and vomiting. She is initiated on three different parenteral antibiotics. However, after a few days, she observes a significant decline in her hearing ability in both ears. Which antibiotic is accountable for this adverse reaction?
Your Answer: Erythromycin
Correct Answer: Gentamicin
Explanation:Aminoglycosides are known to cause ototoxicity, which is an important adverse effect. Among the antibiotics listed, only gentamicin belongs to this class. Ceftriaxone is a cephalosporin that can lead to diarrhoea and C. difficile colitis, while penicillin is associated with a higher risk of anaphylactic reactions compared to other antibiotics. Erythromycin, a macrolide, can cause arrhythmias.
Gentamicin is a type of antibiotic known as an aminoglycoside. It is not easily dissolved in lipids, so it is typically administered through injection or topical application. It is commonly used to treat infections such as infective endocarditis and otitis externa. However, gentamicin can have adverse effects on the body, such as ototoxicity, which can cause damage to the auditory or vestibular nerves. This damage is irreversible. Gentamicin can also cause nephrotoxicity, which can lead to acute tubular necrosis. The risk of toxicity increases when gentamicin is used in conjunction with furosemide. Lower doses and more frequent monitoring are necessary to prevent these adverse effects. Gentamicin is contraindicated in patients with myasthenia gravis. To ensure safe dosing, plasma concentrations of gentamicin are monitored. Peak levels are measured one hour after administration, and trough levels are measured just before the next dose. If the trough level is high, the interval between doses should be increased. If the peak level is high, the dose should be decreased.
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This question is part of the following fields:
- General Principles
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Question 6
Correct
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What is the main factor that determines glomerular filtration rate (GFR)?
Your Answer: Glomerular hydrostatic pressure
Explanation:Glomerular Filtration Rate
Glomerular filtration rate (GFR) is the measure of how well the kidneys are functioning. It is determined by the sum of hydrostatic and osmotic forces across the glomerular membrane, which gives the overall net filtration pressure and the glomerular capillary filtration coefficient. The net filtration pressure is made up of four opposing forces, including the glomerular hydrostatic pressure promoting filtration, the hydrostatic pressure within the Bowman’s capsule opposing filtration, the osmotic pressure of the glomerular capillary plasma proteins opposing filtration, and the osmotic pressure of the proteins within the Bowman’s capsule promoting filtration.
Changes to these relative pressures can alter the GFR, which can occur in both normal physiology and pathological conditions. the factors that influence GFR is important in diagnosing and treating kidney diseases. By monitoring GFR, healthcare professionals can determine the extent of kidney damage and develop appropriate treatment plans. Overall, GFR is a crucial measure of kidney function that helps to maintain overall health and well-being.
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This question is part of the following fields:
- Clinical Sciences
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Question 7
Incorrect
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A 78-year-old male is brought to the family physician by his daughter, who reports that he has been experiencing increased forgetfulness and confusion for the past 10 weeks. Initially, he had trouble remembering appointments, but now struggles to recall the names of family members.
The doctor suspects that the patient may have Alzheimer's disease and explains to the daughter that this condition is caused by a decrease in acetylcholine (ACh).
What is a true statement about acetylcholine?Your Answer: Main transmitter in all postganglionic sympathetic neurons
Correct Answer: Main neurotransmitter in all preganglionic sympathetic neurons
Explanation:The primary neurotransmitter present in all preganglionic sympathetic neurons and some postganglionic sympathetic fibers, such as those to sweat glands, is acetylcholine. Acetylcholine is also the primary neurotransmitter in all preganglionic and postganglionic parasympathetic neurons. postganglionic sympathetic neurons also contain adrenaline and noradrenaline as neurotransmitters. The basal nucleus of Meynert in the central nervous system is responsible for synthesizing ACh.
Acetylcholine (ACh) is a crucial neurotransmitter in the somatic nervous system and plays a significant role in the autonomic nervous system. It is the primary neurotransmitter in all pre- and postganglionic parasympathetic neurons, all preganglionic sympathetic neurons, and postganglionic sympathetic fibers, including sudomotor neurons that regulate sweat glands. Acetylcholinesterase is an enzyme that breaks down acetylcholine. In conditions such as myasthenia gravis, where there is a deficiency of functioning acetylcholine receptors, acetylcholinesterase inhibitors are used.
In the central nervous system, acetylcholine is synthesized in the basal nucleus of Meynert. Alzheimer’s disease is associated with decreased levels of acetylcholine in the basal nucleus of Meynert. Therefore, acetylcholine plays a crucial role in the functioning of the nervous system, and its deficiency can lead to various neurological disorders.
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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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Which one of the following statements relating to malignant mesothelioma is not true?
Your Answer: It is linked to asbestos exposure.
Correct Answer: It is linked to cigarette smoking independent of asbestos exposure.
Explanation:This type of cancer is not associated with smoking cigarettes. The preferred treatment option is a complete removal of the tumor if caught early. Radiation therapy is commonly administered before or after surgery, but this type of cancer is not highly responsive to radiation. The most effective treatment involves a combination of chemotherapy drugs, with many regimens utilizing cisplatin.
Occupational cancers are responsible for 5.3% of cancer deaths, with men being more affected than women. The most common types of cancer in men include mesothelioma, bladder cancer, non-melanoma skin cancer, lung cancer, and sino-nasal cancer. Occupations that have a high risk of developing tumors include those in the construction industry, coal tar and pitch workers, miners, metalworkers, asbestos workers, and those in the rubber industry. Shift work has also been linked to breast cancer in women.
The latency period between exposure to carcinogens and the development of cancer is typically 15 years for solid tumors and 20 years for leukemia. Many occupational cancers are rare, such as sino-nasal cancer, which is linked to wood dust exposure and is not strongly associated with smoking. Another rare occupational tumor is angiosarcoma of the liver, which is linked to working with vinyl chloride. In non-occupational contexts, these tumors are extremely rare.
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This question is part of the following fields:
- Haematology And Oncology
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Question 9
Incorrect
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A 65-year-old man visits his GP complaining of double vision. He reports that the issue started three days ago after he fell off a ladder while doing some home repairs. During the examination, the doctor notices some minor bruising on the patient's head. Upon testing the patient's cranial nerves, the doctor observes vertical diplopia that is exacerbated by looking downwards and inwards.
Which cranial nerve is most likely to have been affected by the patient's fall?Your Answer: Abducens (CN VI)
Correct Answer: Trochlear (CN IV)
Explanation:Cranial nerves are a set of 12 nerves that emerge from the brain and control various functions of the head and neck. Each nerve has a specific function, such as smell, sight, eye movement, facial sensation, and tongue movement. Some nerves are sensory, some are motor, and some are both. A useful mnemonic to remember the order of the nerves is Some Say Marry Money But My Brother Says Big Brains Matter Most, with S representing sensory, M representing motor, and B representing both.
In addition to their specific functions, cranial nerves also play a role in various reflexes. These reflexes involve an afferent limb, which carries sensory information to the brain, and an efferent limb, which carries motor information from the brain to the muscles. Examples of cranial nerve reflexes include the corneal reflex, jaw jerk, gag reflex, carotid sinus reflex, pupillary light reflex, and lacrimation reflex. Understanding the functions and reflexes of the cranial nerves is important in diagnosing and treating neurological disorders.
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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 23-year-old woman with known allergies presents to the emergency department with difficulty breathing after eating at a restaurant.
Upon arrival, she exhibits an audible wheeze, swelling of her lips and tongue, and a widespread urticarial rash. Intramuscular adrenaline is promptly administered, resulting in rapid improvement of her condition.
After being observed for a period of time, she is discharged with two auto-injectors containing the same medication for future use and a plan for outpatient follow-up at an allergy clinic.
What is the receptor targeted by this medication?Your Answer: Serine/threonine kinase
Correct Answer: G protein-coupled
Explanation:Adrenaline exerts its effects through G protein-coupled receptors, which are transmembrane proteins that activate intracellular signaling pathways. This mechanism is responsible for the vasoconstriction induced by adrenaline, which is used to counteract the vasodilation and increased vascular permeability seen in anaphylaxis. However, adrenaline does not act on guanylate cyclase receptors, ligand-gated ion channel receptors, or serine/threonine kinase receptors, which are other types of transmembrane proteins that respond to different chemical messengers.
Membrane receptors are proteins located on the surface of cells that receive signals from outside the cell and transmit them inside. There are four main types of membrane receptors: ligand-gated ion channel receptors, tyrosine kinase receptors, guanylate cyclase receptors, and G protein-coupled receptors. Ligand-gated ion channel receptors mediate fast responses and include nicotinic acetylcholine, GABA-A & GABA-C, and glutamate receptors. Tyrosine kinase receptors include receptor tyrosine kinase such as insulin, insulin-like growth factor (IGF), and epidermal growth factor (EGF), and non-receptor tyrosine kinase such as PIGG(L)ET, which stands for Prolactin, Immunomodulators (cytokines IL-2, Il-6, IFN), GH, G-CSF, Erythropoietin, and Thrombopoietin.
Guanylate cyclase receptors contain intrinsic enzyme activity and include atrial natriuretic factor and brain natriuretic peptide. G protein-coupled receptors generally mediate slow transmission and affect metabolic processes. They are activated by a wide variety of extracellular signals such as peptide hormones, biogenic amines (e.g. adrenaline), lipophilic hormones, and light. These receptors have 7-helix membrane-spanning domains and consist of 3 main subunits: alpha, beta, and gamma. The alpha subunit is linked to GDP. Ligand binding causes conformational changes to the receptor, GDP is phosphorylated to GTP, and the alpha subunit is activated. G proteins are named according to the alpha subunit (Gs, Gi, Gq).
The mechanism of G protein-coupled receptors varies depending on the type of G protein involved. Gs stimulates adenylate cyclase, which increases cAMP and activates protein kinase A. Gi inhibits adenylate cyclase, which decreases cAMP and inhibits protein kinase A. Gq activates phospholipase C, which splits PIP2 to IP3 and DAG and activates protein kinase C. Examples of G protein-coupled receptors include beta-1 receptors (epinephrine, norepinephrine, dobutamine), beta-2 receptors (epinephrine, salbuterol), H2 receptors (histamine), D1 receptors (dopamine), V2 receptors (vas
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This question is part of the following fields:
- General Principles
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