-
Question 1
Incorrect
-
A 50-year-old man presents to the emergency department with excruciating chest pain that raises suspicion of aortic dissection. Which layers are the blood expected to be flowing between?
Your Answer: Internal and external elastic laminae
Correct Answer: Tunica intima and tunica media
Explanation:In an aortic dissection, the tunica intima becomes separated from the tunica media. The tunica intima is the innermost layer of a blood vessel, while the tunica media is the second layer and the tunica adventitia is the third layer. Normally, the tunica media would be situated between the tunica intima and adventitia in the aorta. Capillaries have layers called endothelium and basal laminae, while the internal and external elastic laminae are found on either side of the tunica media.
Artery Histology: Layers of Blood Vessel Walls
The wall of a blood vessel is composed of three layers: the tunica intima, tunica media, and tunica adventitia. The innermost layer, the tunica intima, is made up of endothelial cells that are separated by gap junctions. The middle layer, the tunica media, contains smooth muscle cells and is separated from the intima by the internal elastic lamina and from the adventitia by the external elastic lamina. The outermost layer, the tunica adventitia, contains the vasa vasorum, fibroblast, and collagen. This layer is responsible for providing support and protection to the blood vessel. The vasa vasorum are small blood vessels that supply oxygen and nutrients to the larger blood vessels. The fibroblast and collagen provide structural support to the vessel wall. Understanding the histology of arteries is important in diagnosing and treating various cardiovascular diseases.
-
This question is part of the following fields:
- Cardiovascular System
-
-
Question 2
Correct
-
A 37-year-old pregnant woman has experienced premature rupture of membranes (PROM) four hours prior to the onset of labour. What is the most significant predictor of PROM?
Your Answer: Second trimester haemorrhage
Explanation:Premature Rupture of Membranes: Causes and Complications
Premature rupture of membranes (PROM) is a condition where the amniotic sac ruptures more than an hour before the onset of labor. This sudden loss of amniotic fluid vaginally is a common symptom experienced by the mother. PROM is often associated with first and second trimester hemorrhage, although smoking is also a predisposing factor. Infection is a rare cause of PROM, but Chlamydia trachomatis and B haemolytic Streptococci are among the implicated organisms.
Complications of PROM include infection, which can affect both the mother and infant. Additionally, fetal pulmonary dysplasia may occur if there is insufficient remaining amniotic fluid. It is important to monitor and manage PROM to prevent these complications.
-
This question is part of the following fields:
- Clinical Sciences
-
-
Question 3
Incorrect
-
A 63-year-old man visits his physician complaining of exertional dyspnea. To assess his heart function, he undergoes a transthoracic echocardiogram.
What is the method used to determine his cardiac output from the echocardiogram?Your Answer: (end diastolic LV volume - end systolic LV volume) / heart rate
Correct Answer: (end diastolic LV volume - end systolic LV volume) x heart rate
Explanation:Cardiovascular physiology involves the study of the functions and processes of the heart and blood vessels. One important measure of heart function is the left ventricular ejection fraction, which is calculated by dividing the stroke volume (the amount of blood pumped out of the left ventricle with each heartbeat) by the end diastolic LV volume (the amount of blood in the left ventricle at the end of diastole) and multiplying by 100%. Another key measure is cardiac output, which is the amount of blood pumped by the heart per minute and is calculated by multiplying stroke volume by heart rate.
Pulse pressure is another important measure of cardiovascular function, which is the difference between systolic pressure (the highest pressure in the arteries during a heartbeat) and diastolic pressure (the lowest pressure in the arteries between heartbeats). Factors that can increase pulse pressure include a less compliant aorta (which can occur with age) and increased stroke volume.
Finally, systemic vascular resistance is a measure of the resistance to blood flow in the systemic circulation and is calculated by dividing mean arterial pressure (the average pressure in the arteries during a heartbeat) by cardiac output. Understanding these measures of cardiovascular function is important for diagnosing and treating cardiovascular diseases.
-
This question is part of the following fields:
- Cardiovascular System
-
-
Question 4
Incorrect
-
A pregnant woman arrives at the ER with a concern about her facial appearance since waking up this morning. What signs would indicate a diagnosis of Bell's palsy, specifically a unilateral LMN lesion of the facial nerve?
Your Answer: Unilateral loss of sensation of the face
Correct Answer: Unilateral facial weakness involving the forehead and unilateral failure of eye closure
Explanation:When the facial nerve is unilaterally damaged, only the same side of the face is affected because this nerve does not cross over. Despite the fact that the facial nerve also transmits taste signals from the front two-thirds of the tongue, a lower motor neuron (LMN) injury only impacts the nerve’s motor function. This results in weakened facial expression muscles. The muscles in the forehead receive some innervation from the opposite side, so a LMN injury affects the forehead, while an upper motor neuron (UMN) injury does not affect the forehead.
The facial nerve has a nucleus located in the ventrolateral pontine tegmentum, and its axons exit the ventral pons medial to the spinal trigeminal nucleus. Lesions affecting the corticobulbar tract are known as upper motor neuron lesions, while those affecting the individual branches of the facial nerve are lower motor neuron lesions. The lower motor neurons of the facial nerve can leave from either the left or right posterior or anterior facial motor nucleus, with the temporal branch receiving input from both hemispheres of the cerebral cortex, while the zygomatic, buccal, mandibular, and cervical branches receive input from only the contralateral hemisphere.
In the case of an upper motor neuron lesion in the left hemisphere, the right mid- and lower-face would be paralyzed, while the forehead would remain unaffected. This is because the anterior facial motor nucleus receives only contralateral cortical input, while the posterior component receives input from both hemispheres. However, a lower motor neuron lesion affecting either the left or right side would paralyze the entire side of the face, as both the anterior and posterior routes on that side would be affected. This is because the nerves no longer have a means to receive compensatory contralateral input at a downstream decussation.
-
This question is part of the following fields:
- Neurological System
-
-
Question 5
Correct
-
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: 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.
-
This question is part of the following fields:
- Neurological System
-
-
Question 6
Correct
-
A 65-year-old man presents to the Emergency Department with a 60-minute history of central chest pain that extends to his jaw. An ECG reveals an inferior ST-segment elevation myocardial infarction (STEMI). The QRS is positive in leads I and aVL but negative in leads II and aVF. What type of axis deviation is indicated by this finding?
Your Answer: Left
Explanation:To estimate the heart’s axis, one method is the quadrant method, which involves analyzing leads I and aVF. If lead I is positive and lead aVF is negative, this suggests a possible left axis deviation. To confirm left axis deviation, a second method using lead II can be used. If lead II is also negative, then left axis deviation is confirmed. Other types of axis deviation can be determined by analyzing the polarity of leads I and aVF.
ECG Axis Deviation: Causes of Left and Right Deviation
Electrocardiogram (ECG) axis deviation refers to the direction of the electrical activity of the heart. A normal axis is between -30 and +90 degrees. Deviation from this range can indicate underlying cardiac or pulmonary conditions.
Left axis deviation (LAD) can be caused by left anterior hemiblock, left bundle branch block, inferior myocardial infarction, Wolff-Parkinson-White syndrome with a right-sided accessory pathway, hyperkalaemia, congenital heart defects such as ostium primum atrial septal defect (ASD) and tricuspid atresia, and minor LAD in obese individuals.
On the other hand, right axis deviation (RAD) can be caused by right ventricular hypertrophy, left posterior hemiblock, lateral myocardial infarction, chronic lung disease leading to cor pulmonale, pulmonary embolism, ostium secundum ASD, Wolff-Parkinson-White syndrome with a left-sided accessory pathway, and minor RAD in tall individuals. It is also normal in infants less than one year old.
It is important to note that Wolff-Parkinson-White syndrome is a common cause of both LAD and RAD, depending on the location of the accessory pathway. Understanding the causes of ECG axis deviation can aid in the diagnosis and management of underlying conditions.
-
This question is part of the following fields:
- Cardiovascular System
-
-
Question 7
Incorrect
-
A 44-year-old heavy smoker presents with a productive cough and progressively worsening shortness of breath on exertion. The patient's spirometry results are forwarded to you in clinic for review.
Tidal volume (TV) = 400 mL.
Vital capacity (VC) = 3,300 mL.
Inspiratory capacity (IC) = 2,600 mL.
FEV1/FVC = 60%
Body plethysmography is undertaken, demonstrating a residual volume (RV) of 1,200 mL.
What is this patient's total lung capacity (TLC)?Your Answer: 4,900 mL
Correct Answer: 4,500 mL
Explanation:To calculate the total lung capacity, one can add the vital capacity and residual volume. For example, if the vital capacity is 3300 mL and the residual volume is 1200 mL, the total lung capacity would be 4500 mL. It is important to note that tidal volume, inspiratory capacity, and the FEV1/FVC ratio are other measurements related to lung function. Residual volume refers to the amount of air left in the lungs after a maximal exhalation, while total lung capacity refers to the volume of air in the lungs after a maximal inhalation.
Understanding Lung Volumes in Respiratory Physiology
In respiratory physiology, lung volumes can be measured to determine the amount of air that moves in and out of the lungs during breathing. The diagram above shows the different lung volumes that can be measured.
Tidal volume (TV) refers to the amount of air that is inspired or expired with each breath at rest. In males, the TV is 500ml while in females, it is 350ml.
Inspiratory reserve volume (IRV) is the maximum volume of air that can be inspired at the end of a normal tidal inspiration. The inspiratory capacity is the sum of TV and IRV. On the other hand, expiratory reserve volume (ERV) is the maximum volume of air that can be expired at the end of a normal tidal expiration.
Residual volume (RV) is the volume of air that remains in the lungs after maximal expiration. It increases with age and can be calculated by subtracting ERV from FRC. Speaking of FRC, it is the volume in the lungs at the end-expiratory position and is equal to the sum of ERV and RV.
Vital capacity (VC) is the maximum volume of air that can be expired after a maximal inspiration. It decreases with age and can be calculated by adding inspiratory capacity and ERV. Lastly, total lung capacity (TLC) is the sum of vital capacity and residual volume.
Physiological dead space (VD) is calculated by multiplying tidal volume by the difference between arterial carbon dioxide pressure (PaCO2) and end-tidal carbon dioxide pressure (PeCO2) and then dividing the result by PaCO2.
-
This question is part of the following fields:
- Respiratory System
-
-
Question 8
Correct
-
You are a student observing a routine cholecystectomy procedure as part of your clinical placement in a general surgical unit. The patient is a 49-year-old woman with a medical history of asthma and current cholecystitis.
During the induction of anaesthesia, the patient's vital signs rapidly deteriorate. Her blood pressure drops to 80/60mmHg, heart rate increases to 148bpm, and she requires increased ventilatory pressure. The anaesthetist suspects a drug reaction.
What is the primary biochemical agent responsible for this drug reaction, given the most likely mechanism?Your Answer: Histamine
Explanation:The cause of anaphylactic shock is the recognition of an antigen by IgE molecules on mast cells, leading to rapid degranulation and the release of histamine and other inflammatory cytokines. In this case, the patient’s symptoms of hypotension, tachycardia, and airway collapse following administration of anaesthetic medications, along with their history of asthma, suggest anaphylaxis as the cause.
The correct answer to the question of which mediator is primarily involved in anaphylactic reactions is histamine. Histamine is a potent vasodilator and can increase vascular permeability, leading to haemodynamic instability when released in excess.
Bradykinin is not primarily involved in anaphylactic reactions, but rather in angioedema associated with ACE-inhibitor toxicity.
Complement is not primarily involved in anaphylactic reactions, but rather in type-2 hypersensitivity reactions such as in the context of penicillin allergy.
Immune complexes are not primarily involved in anaphylactic reactions, but rather in type-3 hypersensitivity reactions such as glomerulonephritis, various forms of arthritis, and anti-venom vasculitis.
Anaphylaxis is a severe and potentially life-threatening allergic reaction that affects the entire body. It can be caused by various triggers, including food, drugs, and insect venom. The symptoms of anaphylaxis typically develop suddenly and progress rapidly, affecting the airway, breathing, and circulation. Swelling of the throat and tongue, hoarse voice, and stridor are common airway problems, while respiratory wheeze and dyspnea are common breathing problems. Hypotension and tachycardia are common circulation problems. Skin and mucosal changes, such as generalized pruritus and widespread erythematous or urticarial rash, are also present in around 80-90% of patients.
The most important drug in the management of anaphylaxis is intramuscular adrenaline, which should be administered as soon as possible. The recommended doses of adrenaline vary depending on the patient’s age, with the highest dose being 500 micrograms for adults and children over 12 years old. Adrenaline can be repeated every 5 minutes if necessary. If the patient’s respiratory and/or cardiovascular problems persist despite two doses of IM adrenaline, IV fluids should be given for shock, and expert help should be sought for consideration of an IV adrenaline infusion.
Following stabilisation, non-sedating oral antihistamines may be given to patients with persisting skin symptoms. Patients with a new diagnosis of anaphylaxis should be referred to a specialist allergy clinic, and an adrenaline injector should be given as an interim measure before the specialist allergy assessment. Patients should be prescribed two adrenaline auto-injectors, and training should be provided on how to use them. A risk-stratified approach to discharge should be taken, as biphasic reactions can occur in up to 20% of patients. The Resus Council UK recommends a fast-track discharge for patients who have had a good response to a single dose of adrenaline and have been given an adrenaline auto-injector and trained how to use it. Patients who require two doses of IM adrenaline or have had a previous biphasic reaction should be observed for a minimum of 6 hours after symptom resolution, while those who have had a severe reaction requiring more than two doses of IM adrenaline or have severe asthma should be observed for a minimum of 12 hours after symptom resolution. Patients who present late at night or in areas where access to emergency care may be difficult should also be observed for a minimum of 12
-
This question is part of the following fields:
- General Principles
-
-
Question 9
Correct
-
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: 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.
-
This question is part of the following fields:
- Renal System
-
-
Question 10
Incorrect
-
β-adrenergic receptor antagonists, like propranolol, are commonly prescribed in medical practice. In which of the following conditions are β-adrenergic receptor antagonists not recommended for use in elderly patients?
Your Answer: Angina
Correct Answer: Asthma
Explanation:Beta Blockers and Asthma
Beta blockers are commonly used to treat various cardiovascular diseases due to their negative chronotropic and inotropic effects. However, they can be detrimental to individuals with asthma. This is because beta blockers antagonize beta-2 receptors, which can lead to bronchoconstriction and trigger asthma attacks. As a result, beta blockers are not recommended as a treatment for asthma. It is important for healthcare providers to be aware of this potential adverse effect and to consider alternative medications for patients with asthma who require cardiovascular treatment. Proper management of both conditions is crucial to ensure optimal health outcomes for patients.
-
This question is part of the following fields:
- Pharmacology
-
-
Question 11
Correct
-
A 26-year-old female patient visits her GP complaining of fatigue, abdominal cramping, and bloating for the past 7 months. The doctor suspects coeliac disease and orders a blood test, which reveals a positive result for tissue transglutaminase IgA. Which specific type of immune cell is responsible for producing this result?
Your Answer: Plasma cells
Explanation:Plasma cells are responsible for producing large amounts of antibodies specific to a particular antigen. In the case of the patient’s blood results, the presence of tissue transglutaminase IgA antibodies suggests coeliac disease, which are produced by plasma cells that have differentiated from B-lymphocytes.
Eosinophils, macrophages, and memory cells are not responsible for producing antibodies like plasma cells. Eosinophils play a role in inflammation and parasite infections, macrophages are responsible for phagocytosis and antigen presentation, and memory cells remain in the body until the same antigen is faced again, at which point they differentiate into plasma cells to produce the relevant antibodies.
The adaptive immune response involves several types of cells, including helper T cells, cytotoxic T cells, B cells, and plasma cells. Helper T cells are responsible for the cell-mediated immune response and recognize antigens presented by MHC class II molecules. They express CD4, CD3, TCR, and CD28 and are a major source of IL-2. Cytotoxic T cells also participate in the cell-mediated immune response and recognize antigens presented by MHC class I molecules. They induce apoptosis in virally infected and tumor cells and express CD8 and CD3. Both helper T cells and cytotoxic T cells mediate acute and chronic organ rejection.
B cells are the primary cells of the humoral immune response and act as antigen-presenting cells. They also mediate hyperacute organ rejection. Plasma cells are differentiated from B cells and produce large amounts of antibody specific to a particular antigen. Overall, these cells work together to mount a targeted and specific immune response to invading pathogens or abnormal cells.
-
This question is part of the following fields:
- General Principles
-
-
Question 12
Correct
-
Which one of the following triggers the production of stomach acid?
Your Answer: Histamine
Explanation:Gastrin is produced by G cells and stimulates the production of gastric acid. Pepsin is responsible for digesting protein and is secreted simultaneously with gastrin. Secretin, produced by mucosal cells in the duodenum and jejunum, inhibits gastric acid production and stimulates the production of bile and pancreatic juice. Gastric inhibitory peptide, produced in response to fatty acids, inhibits the release of gastrin and acid secretion from parietal cells. Cholecystokinin, also produced by mucosal cells in the duodenum and jejunum in response to fatty acids, inhibits acid secretion from parietal cells and causes the gallbladder to contract while relaxing the sphincter of Oddi.
Overview of Gastrointestinal Hormones
Gastrointestinal hormones play a crucial role in the digestion and absorption of food. These hormones are secreted by various cells in the stomach and small intestine in response to different stimuli such as the presence of food, pH changes, and neural signals.
One of the major hormones involved in food digestion is gastrin, which is secreted by G cells in the antrum of the stomach. Gastrin increases acid secretion by gastric parietal cells, stimulates the secretion of pepsinogen and intrinsic factor, and increases gastric motility. Another hormone, cholecystokinin (CCK), is secreted by I cells in the upper small intestine in response to partially digested proteins and triglycerides. CCK increases the secretion of enzyme-rich fluid from the pancreas, contraction of the gallbladder, and relaxation of the sphincter of Oddi. It also decreases gastric emptying and induces satiety.
Secretin is another hormone secreted by S cells in the upper small intestine in response to acidic chyme and fatty acids. Secretin increases the secretion of bicarbonate-rich fluid from the pancreas and hepatic duct cells, decreases gastric acid secretion, and has a trophic effect on pancreatic acinar cells. Vasoactive intestinal peptide (VIP) is a neural hormone that stimulates secretion by the pancreas and intestines and inhibits acid secretion.
Finally, somatostatin is secreted by D cells in the pancreas and stomach in response to fat, bile salts, and glucose in the intestinal lumen. Somatostatin decreases acid and pepsin secretion, decreases gastrin secretion, decreases pancreatic enzyme secretion, and decreases insulin and glucagon secretion. It also inhibits the trophic effects of gastrin and stimulates gastric mucous production.
In summary, gastrointestinal hormones play a crucial role in regulating the digestive process and maintaining homeostasis in the gastrointestinal tract.
-
This question is part of the following fields:
- Gastrointestinal System
-
-
Question 13
Incorrect
-
A 6-year-old girl trips and obtains a significant abrasion on her knee. Can you provide the correct sequence of vascular changes that occur in her knee after the injury?
Your Answer: Vasodilation, vasoconstriction, increased permeability of vessels, stasis of red blood cells, eosinophil margination
Correct Answer: Vasoconstriction, vasodilation, increased permeability of vessels, stasis of red blood cells, neutrophil margination
Explanation:Acute inflammation is a response to cell injury in vascularized tissue. It is triggered by chemical factors produced in response to a stimulus, such as fibrin, antibodies, bradykinin, and the complement system. The goal of acute inflammation is to neutralize the offending agent and initiate the repair process. The main characteristics of inflammation are fluid exudation, exudation of plasma proteins, and migration of white blood cells.
The vascular changes that occur during acute inflammation include transient vasoconstriction, vasodilation, increased permeability of vessels, RBC concentration, and neutrophil margination. These changes are followed by leukocyte extravasation, margination, rolling, and adhesion of neutrophils, transmigration across the endothelium, and migration towards chemotactic stimulus.
Leukocyte activation is induced by microbes, products of necrotic cells, antigen-antibody complexes, production of prostaglandins, degranulation and secretion of lysosomal enzymes, cytokine secretion, and modulation of leukocyte adhesion molecules. This leads to phagocytosis and termination of the acute inflammatory response.
-
This question is part of the following fields:
- General Principles
-
-
Question 14
Incorrect
-
What is the name of the zoonotic organism that can lead to the development of a rash, meningitis, arthritis, and neuropathies?
Your Answer: Brucella sp.
Correct Answer: Borrelia burgdorferi
Explanation:Lyme Disease and Other Tick-Borne Illnesses
Lyme disease is a type of tick-borne illness that is caused by a zoonotic organism called Borrelia burgdorferi. This disease typically develops in three stages, with the first stage characterized by a rash that appears at the site of the tick bite. This rash is often referred to as erythema migrans and has a distinctive bulls eye appearance with central clearing. During the second stage of the disease, patients may develop carditis, lymphocytic meningitis, or neuropathies, including bilateral VII palsy. In the third stage, patients may experience a range of vague symptoms, such as malaise, fatigue, and arthralgia or arthritis. Most patients remember the tick bite, which can help with diagnosis.
Lyme disease is typically diagnosed using serology for Borrelia and is treated with tetracycline. Other tick-borne illnesses include cat scratch fever, which is caused by Bartonella henselae and is characterized by lymphadenopathy with pyrexia. Brucella and Coxiella can cause brucellosis and Q-fever, respectively, which can lead to fever of unknown origin with arthritis. Finally, Yersinia pestis is the cause of bubonic plague. these different tick-borne illnesses and their symptoms can help with early diagnosis and treatment.
-
This question is part of the following fields:
- Microbiology
-
-
Question 15
Incorrect
-
A 32-year-old woman undergoes a colonoscopy and a biopsy reveals a malignant tumour in her sigmoid colon. Her grandmother died of colorectal cancer at 30-years-old and her father developed endometrial cancer at 40-years-old. Which gene is suspected to be responsible for this condition?
Your Answer: MYH gene
Correct Answer: Mismatch repair genes
Explanation:The patient’s familial background indicates the possibility of Lynch syndrome, given that several of his close relatives developed cancer at a young age. This is supported by the fact that his family has a history of both colorectal cancer, which may indicate a defect in the APC gene, and endometrial cancer, which is also linked to Lynch syndrome. Lynch syndrome is associated with mutations in mismatch repair genes such as MSH2, MLH1, PMS2, and GTBP, which are responsible for identifying and repairing errors that occur during DNA replication, such as insertions and deletions of bases. Mutations in these genes can increase the risk of developing cancers such as colorectal, endometrial, and renal cancer.
Colorectal cancer can be classified into three types: sporadic, hereditary non-polyposis colorectal carcinoma (HNPCC), and familial adenomatous polyposis (FAP). Sporadic colon cancer is believed to be caused by a series of genetic mutations, including allelic loss of the APC gene, activation of the K-ras oncogene, and deletion of p53 and DCC tumor suppressor genes. HNPCC, which is an autosomal dominant condition, is the most common form of inherited colon cancer. It is caused by mutations in genes involved in DNA mismatch repair, leading to microsatellite instability. The most common genes affected are MSH2 and MLH1. Patients with HNPCC are also at a higher risk of other cancers, such as endometrial cancer. The Amsterdam criteria are sometimes used to aid diagnosis of HNPCC. FAP is a rare autosomal dominant condition that leads to the formation of hundreds of polyps by the age of 30-40 years. It is caused by a mutation in the APC gene. Patients with FAP are also at risk of duodenal tumors. A variant of FAP called Gardner’s syndrome can also feature osteomas of the skull and mandible, retinal pigmentation, thyroid carcinoma, and epidermoid cysts on the skin. Genetic testing can be done to diagnose HNPCC and FAP, and patients with FAP generally have a total colectomy with ileo-anal pouch formation in their twenties.
-
This question is part of the following fields:
- Gastrointestinal System
-
-
Question 16
Correct
-
Which of the following is most impacted by the frequency of a condition?
Your Answer: Positive predictive value
Explanation:Precision, sensitivity, accuracy, and specificity remain consistent regardless of the prevalence of the condition as they are inherent qualities. However, the positive predictive value may be impacted in situations where the prevalence of the condition is low. This is because a decrease in true positives results in a smaller numerator, leading to a lower PPV.
Precision refers to the consistency of a test in producing the same results when repeated multiple times. It is an important aspect of test reliability and can impact the accuracy of the results. In order to assess precision, multiple tests are performed on the same sample and the results are compared. A test with high precision will produce similar results each time it is performed, while a test with low precision will produce inconsistent results. It is important to consider precision when interpreting test results and making clinical decisions.
-
This question is part of the following fields:
- General Principles
-
-
Question 17
Correct
-
A baby is born prematurely at 28 weeks, increasing the likelihood of delayed closure of the ductus venosus. What are the structures that the ductus venosus connects in the fetus?
Your Answer: IVC and umbilical vein
Explanation:During fetal development, the ductus venosus redirects blood flow from the left umbilical vein directly to the inferior vena cava, enabling oxygenated blood from the placenta to bypass the fetal liver. Typically, the ductus closes and becomes the ligamentum venosum between day 3 and 7. However, premature infants are more susceptible to delayed closure.
During cardiovascular embryology, the heart undergoes significant development and differentiation. At around 14 days gestation, the heart consists of primitive structures such as the truncus arteriosus, bulbus cordis, primitive atria, and primitive ventricle. These structures give rise to various parts of the heart, including the ascending aorta and pulmonary trunk, right ventricle, left and right atria, and majority of the left ventricle. The division of the truncus arteriosus is triggered by neural crest cell migration from the pharyngeal arches, and any issues with this migration can lead to congenital heart defects such as transposition of the great arteries or tetralogy of Fallot. Other structures derived from the primitive heart include the coronary sinus, superior vena cava, fossa ovalis, and various ligaments such as the ligamentum arteriosum and ligamentum venosum. The allantois gives rise to the urachus, while the umbilical artery becomes the medial umbilical ligaments and the umbilical vein becomes the ligamentum teres hepatis inside the falciform ligament. Overall, cardiovascular embryology is a complex process that involves the differentiation and development of various structures that ultimately form the mature heart.
-
This question is part of the following fields:
- Cardiovascular System
-
-
Question 18
Incorrect
-
A 14-year-old boy comes to his GP complaining of fatigue and unusual bruising that has been going on for 2 months. During the examination, the doctor notices multiple bruises on the boy's abdomen and arms. The doctor also discovers hepatosplenomegaly during the abdominal examination. The boy is immediately referred to a haematology specialist, who confirms the diagnosis of chronic myeloid leukaemia. What is the genetic abnormality that is most commonly associated with this type of cancer?
Your Answer: NOTCH1 mutation
Correct Answer: BCR-ABL translocation
Explanation:The hallmark of chronic myeloid leukaemia is the BCR-ABL translocation, which forms the Philadelphia chromosome by fusing chromosomes 9 and 22. NOTCH1 mutation, T(14:18) translocation, and TP53 mutation are not characteristic of this type of leukemia.
Oncogenes are genes that promote cancer and are derived from normal genes called proto-oncogenes. Proto-oncogenes play a crucial role in cellular growth and differentiation. However, a gain of function in oncogenes increases the risk of cancer. Only one mutated copy of the gene is needed for cancer to occur, making it a dominant effect. Oncogenes are responsible for up to 20% of human cancers and can become oncogenes through mutation, chromosomal translocation, or increased protein expression.
In contrast, tumor suppressor genes restrict or repress cellular proliferation in normal cells. Their inactivation through mutation or germ line incorporation is implicated in various cancers, including renal, colonic, breast, and bladder cancer. Tumor suppressor genes, such as p53, offer protection by causing apoptosis of damaged cells. Other well-known genes include BRCA1 and BRCA2. Loss of function in tumor suppressor genes results in an increased risk of cancer, while gain of function in oncogenes increases the risk of cancer.
-
This question is part of the following fields:
- General Principles
-
-
Question 19
Incorrect
-
In individuals with an annular pancreas, what is the most probable location of blockage?
Your Answer: The first part of the duodenum
Correct Answer: The second part of the duodenum
Explanation:The pancreas is formed from two outgrowths of the foregut, namely the ventral and dorsal buds. As the rotation process takes place, the ventral bud merges with the gallbladder and bile duct, which are located nearby. However, if the pancreas fails to rotate properly, it may exert pressure on the duodenum, leading to obstruction. This condition is often caused by an abnormality in the development of the duodenum, and the most commonly affected area is the second part of the duodenum.
Anatomy of the Pancreas
The pancreas is located behind the stomach and is a retroperitoneal organ. It can be accessed surgically by dividing the peritoneal reflection that connects the greater omentum to the transverse colon. The pancreatic head is situated in the curvature of the duodenum, while its tail is close to the hilum of the spleen. The pancreas has various relations with other organs, such as the inferior vena cava, common bile duct, renal veins, superior mesenteric vein and artery, crus of diaphragm, psoas muscle, adrenal gland, kidney, aorta, pylorus, gastroduodenal artery, and splenic hilum.
The arterial supply of the pancreas is through the pancreaticoduodenal artery for the head and the splenic artery for the rest of the organ. The venous drainage for the head is through the superior mesenteric vein, while the body and tail are drained by the splenic vein. The ampulla of Vater is an important landmark that marks the transition from foregut to midgut and is located halfway along the second part of the duodenum. Overall, understanding the anatomy of the pancreas is crucial for surgical procedures and diagnosing pancreatic diseases.
-
This question is part of the following fields:
- Gastrointestinal System
-
-
Question 20
Incorrect
-
An 87-year-old man has been admitted to the geriatrics ward due to repeated falls at home. He has been experiencing memory problems for the past 5-10 years and has become increasingly aggressive towards his family. Additionally, he has difficulty with self-care and often becomes disoriented.
During examination, there are no noticeable tremors or walking difficulties. The patient does not exhibit any signs of chorea, hallucinations, or vivid dreams. There are no features of disinhibition, and the patient is able to communicate normally.
What type of abnormality would you expect to see on an MRI scan?Your Answer: Periventricular plaques
Correct Answer: Atrophy of the cortex and hippocampus
Explanation:Alzheimer’s disease is characterized by widespread cerebral atrophy, primarily affecting the cortex and hippocampus. This results in symptoms such as memory loss, behavioral changes, poor self-care, and getting lost frequently. The cortex is responsible for motor planning and behavioral issues, while the hippocampus is responsible for memory features. Atrophy of the caudate head and putamen is not consistent with Alzheimer’s disease, but rather with Huntington’s disease, which is a genetic disorder characterized by chorea. Atrophy of the frontal and temporal lobes is more consistent with frontotemporal dementia, which presents with greater language and behavioral issues. Hyper-intensity of the substantia nigra and red nuclei is not a feature of Alzheimer’s disease, but rather of Parkinson’s disease, which is characterized by movement issues such as tremors and shuffling gait, as well as hallucinations and sleep disturbances.
Alzheimer’s disease is a type of dementia that gradually worsens over time and is caused by the degeneration of the brain. There are several risk factors associated with Alzheimer’s disease, including increasing age, family history, and certain genetic mutations. The disease is also more common in individuals of Caucasian ethnicity and those with Down’s syndrome.
The pathological changes associated with Alzheimer’s disease include widespread cerebral atrophy, particularly in the cortex and hippocampus. Microscopically, there are cortical plaques caused by the deposition of type A-Beta-amyloid protein and intraneuronal neurofibrillary tangles caused by abnormal aggregation of the tau protein. The hyperphosphorylation of the tau protein has been linked to Alzheimer’s disease. Additionally, there is a deficit of acetylcholine due to damage to an ascending forebrain projection.
Neurofibrillary tangles are a hallmark of Alzheimer’s disease and are partly made from a protein called tau. Tau is a protein that interacts with tubulin to stabilize microtubules and promote tubulin assembly into microtubules. In Alzheimer’s disease, tau proteins are excessively phosphorylated, impairing their function.
-
This question is part of the following fields:
- Neurological System
-
-
Question 21
Correct
-
John, 72-years-old, visits his GP with concerns of frequent urination accompanied by a burning sensation and interrupted flow of urine that have persisted for approximately 5 months. During a digital rectal examination, his GP detects an enlarged prostate without nodules and his PSA levels are moderately elevated. The diagnosis is BPH. Which zone of the prostate experiences enlargement in BPH?
Your Answer: Transitional zone
Explanation:The periurethral gland area of the prostate gland does not have a distinct functional or histological identity. It is composed of cells from various regions of the prostate that are linked to different medical conditions. This part of the prostate does not typically experience enlargement and lacks glandular elements. Instead, it consists solely of fibrous tissue and smooth muscle cells, as its name implies.
Benign prostatic hyperplasia (BPH) is a common condition that affects older men, with around 50% of 50-year-old men showing evidence of BPH and 30% experiencing symptoms. The risk of BPH increases with age, with around 80% of 80-year-old men having evidence of the condition. Ethnicity also plays a role, with black men having a higher risk than white or Asian men. BPH typically presents with lower urinary tract symptoms (LUTS), which can be categorised into obstructive (voiding) symptoms and irritative (storage) symptoms. Complications of BPH can include urinary tract infections, retention, and obstructive uropathy.
Assessment of BPH may involve dipstick urine testing, U&Es, and PSA testing if obstructive symptoms are present or if the patient is concerned about prostate cancer. A urinary frequency-volume chart and the International Prostate Symptom Score (IPSS) can also be used to assess the severity of LUTS and their impact on quality of life. Management options for BPH include watchful waiting, alpha-1 antagonists, 5 alpha-reductase inhibitors, combination therapy, and surgery. Alpha-1 antagonists are considered first-line for moderate-to-severe voiding symptoms and can improve symptoms in around 70% of men, but may cause adverse effects such as dizziness and dry mouth. 5 alpha-reductase inhibitors may slow disease progression and reduce prostate volume, but can cause adverse effects such as erectile dysfunction and reduced libido. Combination therapy may be used for bothersome moderate-to-severe voiding symptoms and prostatic enlargement. Antimuscarinic drugs may be tried for persistent storage symptoms. Surgery, such as transurethral resection of the prostate (TURP), may also be an option.
-
This question is part of the following fields:
- Renal System
-
-
Question 22
Incorrect
-
A 25-year-old man is brought to the emergency department for ingesting his father's blood pressure medication. Upon arrival, his vital signs are recorded as follows: blood pressure of 90/62 mmHg, heart rate of 55 beats per minute, respiratory rate of 32 breaths per minute, and temperature of 37.4 ºC. Despite administering atropine, his condition remains unchanged. The emergency consultant orders the administration of IV glucagon. What is the mechanism of action of glucagon?
Your Answer: Glucagon causes an increase in intracellular calcium by inhibiting Na+/K+ATPase
Correct Answer: Glucagon causes an increase in intracellular calcium by increasing levels of cAMP
Explanation:Glucagon induces an elevation in intracellular Ca2+ levels by stimulating an increase in cAMP. This, in turn, leads to a positive inotropic and chronotropic effect on cardiovascular performance. The rise in cAMP levels causes an increase in intracellular calcium levels, which enhances the contractility of the myocytes. As a result, glucagon has been found to increase cardiac output and heart rate. Glucagon does not compete with beta agonists for beta-1 receptors, and it does not promote the production of cGMP. Therefore, the last two options are incorrect. Digoxin, on the other hand, inhibits the Na+/K+ATPase, which leads to an increase in intracellular calcium levels and a positive inotropic effect. However, this option is also incorrect.
Managing Beta-Blocker Overdose
Beta-blocker overdose can lead to various symptoms such as bradycardia, hypotension, heart failure, and syncope. To manage these symptoms, it is important to first identify if the patient is bradycardic. If so, atropine can be administered. However, in cases where atropine is not effective, glucagon may be used as an alternative. It is important to note that haemodialysis is not an effective treatment for beta-blocker overdose. Proper management of beta-blocker overdose is crucial in preventing further complications and ensuring the patient’s safety.
-
This question is part of the following fields:
- General Principles
-
-
Question 23
Correct
-
A 70-year-old male arrives at the emergency department complaining of tearing chest pain that radiates to his back. He has a history of uncontrolled hypertension. During auscultation, a diastolic murmur is heard, which is most audible over the 2nd intercostal space, right sternal border. What chest radiograph findings are expected from this patient's presentation?
Your Answer: Widened mediastinum
Explanation:Aortic dissection can cause a widened mediastinum on a chest x-ray. This condition is characterized by tearing chest pain that radiates to the back, hypertension, and aortic regurgitation. It occurs when there is a tear in the tunica intima of the aorta’s wall, creating a false lumen that fills with a large volume of blood.
Calcification of the arch of the aorta, cardiomegaly, displacement of the trachea from the midline, and enlargement of the aortic knob are not commonly associated with aortic dissection. Calcification of the walls of arteries is a chronic process that occurs with age and is more likely in men. Cardiomegaly can be caused by various conditions, including ischaemic heart disease and congenital abnormalities. Displacement of the trachea from the midline can result from other pathologies such as a tension pneumothorax or an aortic aneurysm. Enlargement of the aortic knob is a classical finding of an aortic aneurysm.
Aortic dissection is classified according to the location of the tear in the aorta. The Stanford classification divides it into type A, which affects the ascending aorta in two-thirds of cases, and type B, which affects the descending aorta distal to the left subclavian origin in one-third of cases. The DeBakey classification divides it into type I, which originates in the ascending aorta and propagates to at least the aortic arch and possibly beyond it distally, type II, which originates in and is confined to the ascending aorta, and type III, which originates in the descending aorta and rarely extends proximally but will extend distally.
To diagnose aortic dissection, a chest x-ray may show a widened mediastinum, but CT angiography of the chest, abdomen, and pelvis is the investigation of choice. However, the choice of investigations should take into account the patient’s clinical stability, as they may present acutely and be unstable. Transoesophageal echocardiography (TOE) is more suitable for unstable patients who are too risky to take to the CT scanner.
The management of type A aortic dissection is surgical, but blood pressure should be controlled to a target systolic of 100-120 mmHg while awaiting intervention. On the other hand, type B aortic dissection is managed conservatively with bed rest and IV labetalol to reduce blood pressure and prevent progression. Complications of a backward tear include aortic incompetence/regurgitation and MI, while complications of a forward tear include unequal arm pulses and BP, stroke, and renal failure. Endovascular repair of type B aortic dissection may have a role in the future.
-
This question is part of the following fields:
- Cardiovascular System
-
-
Question 24
Correct
-
An 75-year-old woman presents to her GP with a 4-month history of dysphagia, weight loss, and a change in her voice tone. After a nasendoscopy, laryngeal carcinoma is confirmed. The surgical team plans her operation based on a head and neck CT scan. Which vertebrae are likely located posterior to the carcinoma?
Your Answer: C3-C6
Explanation:The larynx is situated in the front of the neck, specifically at the level of the C3-C6 vertebrae. It is positioned below the pharynx and contains the vocal cords that produce sound. The C1-C3 vertebrae are located much higher than the larynx, while the C2-C4 vertebrae cover the area from the oropharynx to the first part of the larynx. The C6-T1 vertebrae are situated behind the larynx and the upper portions of the trachea and esophagus.
Anatomy of the Larynx
The larynx is located in the front of the neck, between the third and sixth cervical vertebrae. It is made up of several cartilaginous segments, including the paired arytenoid, corniculate, and cuneiform cartilages, as well as the single thyroid, cricoid, and epiglottic cartilages. The cricoid cartilage forms a complete ring. The laryngeal cavity extends from the laryngeal inlet to the inferior border of the cricoid cartilage and is divided into three parts: the laryngeal vestibule, the laryngeal ventricle, and the infraglottic cavity.
The vocal folds, also known as the true vocal cords, control sound production. They consist of the vocal ligament and the vocalis muscle, which is the most medial part of the thyroarytenoid muscle. The glottis is composed of the vocal folds, processes, and rima glottidis, which is the narrowest potential site within the larynx.
The larynx is also home to several muscles, including the posterior cricoarytenoid, lateral cricoarytenoid, thyroarytenoid, transverse and oblique arytenoids, vocalis, and cricothyroid muscles. These muscles are responsible for various actions, such as abducting or adducting the vocal folds and relaxing or tensing the vocal ligament.
The larynx receives its arterial supply from the laryngeal arteries, which are branches of the superior and inferior thyroid arteries. Venous drainage is via the superior and inferior laryngeal veins. Lymphatic drainage varies depending on the location within the larynx, with the vocal cords having no lymphatic drainage and the supraglottic and subglottic parts draining into different lymph nodes.
Overall, understanding the anatomy of the larynx is important for proper diagnosis and treatment of various conditions affecting this structure.
-
This question is part of the following fields:
- Respiratory System
-
-
Question 25
Correct
-
A 54-year-old female presents to her GP with complaints of constipation, low mood, and back pain.
Her blood results are as follows:
Hb 125 g/L Male: (135-180) Female: (115 - 160)
Calcium 3.1 mmol/L (2.1-2.6)
Phosphate 0.6 mmol/L (0.8-1.4)
Magnesium 0.8 mmol/L (0.7-1.0)
Thyroid stimulating hormone (TSH) 4.5 mU/L (0.5-5.5)
Free thyroxine (T4) 9.0 pmol/L (9.0 - 18)
Na+ 136 mmol/L (135 - 145)
K+ 4 mmol/L (3.5 - 5.0)
Bicarbonate 24 mmol/L (22 - 29)
Urea 6 mmol/L (2.0 - 7.0)
Creatinine 80 µmol/L (55 - 120)
Based on these findings, what is the most likely diagnosis?Your Answer: Primary hyperparathyroidism
Explanation:The likely diagnosis for the patient’s condition is primary hyperparathyroidism, which is characterized by an excess release of parathyroid hormone (PTH) that stimulates osteoclast activity and causes an increase in blood calcium levels while decreasing phosphate levels. This is different from secondary hyperparathyroidism, which is caused by kidney damage that reduces vitamin D hydroxylation and results in lower/normal calcium levels and higher phosphate levels. Tertiary hyperparathyroidism presents with high levels of PTH, calcium, and phosphate. Hypothyroidism is not the cause as there are no abnormalities in TSH and free T4 levels. Although multiple myeloma also presents with high calcium levels, it is usually accompanied by anemia and renal failure, which are not present in this case as the patient’s hemoglobin and creatinine levels are normal.
Hormones Controlling Calcium Metabolism
Calcium metabolism is primarily controlled by two hormones, parathyroid hormone (PTH) and 1,25-dihydroxycholecalciferol (calcitriol). Other hormones such as calcitonin, thyroxine, and growth hormone also play a role. PTH increases plasma calcium levels and decreases plasma phosphate levels. It also increases renal tubular reabsorption of calcium, osteoclastic activity, and renal conversion of 25-hydroxycholecalciferol to 1,25-dihydroxycholecalciferol. On the other hand, 1,25-dihydroxycholecalciferol increases plasma calcium and plasma phosphate levels, renal tubular reabsorption and gut absorption of calcium, osteoclastic activity, and renal phosphate reabsorption. It is important to note that osteoclastic activity is increased indirectly by PTH as osteoclasts do not have PTH receptors. Understanding the actions of these hormones is crucial in maintaining proper calcium metabolism in the body.
-
This question is part of the following fields:
- General Principles
-
-
Question 26
Correct
-
A 30-year-old man has his appendix removed due to appendicitis and sends it for histopathological examination. What is the most probable microscopic identification that will be made?
Your Answer: Neutrophils
Explanation:The most frequently encountered cell type in acute inflammation is neutrophil polymorphs.
Acute inflammation is a response to cell injury in vascularized tissue. It is triggered by chemical factors produced in response to a stimulus, such as fibrin, antibodies, bradykinin, and the complement system. The goal of acute inflammation is to neutralize the offending agent and initiate the repair process. The main characteristics of inflammation are fluid exudation, exudation of plasma proteins, and migration of white blood cells.
The vascular changes that occur during acute inflammation include transient vasoconstriction, vasodilation, increased permeability of vessels, RBC concentration, and neutrophil margination. These changes are followed by leukocyte extravasation, margination, rolling, and adhesion of neutrophils, transmigration across the endothelium, and migration towards chemotactic stimulus.
Leukocyte activation is induced by microbes, products of necrotic cells, antigen-antibody complexes, production of prostaglandins, degranulation and secretion of lysosomal enzymes, cytokine secretion, and modulation of leukocyte adhesion molecules. This leads to phagocytosis and termination of the acute inflammatory response.
-
This question is part of the following fields:
- General Principles
-
-
Question 27
Incorrect
-
A 24-year-old man is being evaluated at the respiratory clinic for possible bronchiectasis. He has a history of recurrent chest infections since childhood and has difficulty maintaining a healthy weight. Despite using inhalers, he has not experienced any significant improvement. Genetic testing has been ordered to investigate the possibility of cystic fibrosis.
What is the typical role of the cystic fibrosis transmembrane conductance regulator?Your Answer: Potassium channel
Correct Answer: Chloride channel
Explanation:The chloride channel, specifically a cyclic-AMP regulated chloride channel, is the correct answer. Cystic fibrosis can be caused by various mutations, but they all affect the same gene, the cystic fibrosis transmembrane conductance regulator gene. This gene encodes a chloride channel that, when dysfunctional, results in increased viscosity of secretions and the development of cystic fibrosis.
Understanding Cystic Fibrosis
Cystic fibrosis is a genetic disorder that causes thickened secretions in the lungs and pancreas. It is an autosomal recessive condition that occurs due to a defect in the cystic fibrosis transmembrane conductance regulator gene (CFTR), which regulates a chloride channel. In the UK, 80% of CF cases are caused by delta F508 on chromosome 7, and the carrier rate is approximately 1 in 25.
CF patients are at risk of colonization by certain organisms, including Staphylococcus aureus, Pseudomonas aeruginosa, Burkholderia cepacia (previously known as Pseudomonas cepacia), and Aspergillus. These organisms can cause infections and exacerbate symptoms in CF patients. It is important for healthcare providers to monitor and manage these infections to prevent further complications.
Overall, understanding cystic fibrosis and its associated risks can help healthcare providers provide better care for patients with this condition.
-
This question is part of the following fields:
- Respiratory System
-
-
Question 28
Incorrect
-
A 24-year-old man with asthma is brought to the emergency department due to shortness of breath. He has been experiencing a worsening cough with thick yellow phlegm for the past three days. He regularly uses a beclomethasone inhaler and salbutamol inhaler as needed.
Upon assessment, the patient's heart rate is 166 bpm, blood pressure is 113/65 mmHg, oxygen saturation is 91%, and respiratory rate is 29. He is only able to speak in broken sentences.
Which of the following therapies is most likely to exacerbate his asthma?Your Answer: Oxygen
Correct Answer: Bisoprolol
Explanation:Treatment for Acute Asthma Attack
When a person experiences an acute asthma attack, the first and most important treatment is to administer oxygen. This is followed by nebulised salbutamol to dilate the airways, oral steroids, and appropriate antibiotics if the productive cough is due to a chest infection. However, the use of the beta blocker bisoprolol to reduce the heart rate would be inappropriate.
Salbutamol works by targeting beta-2 adrenoceptors, which causes the bronchi to dilate. However, cardiac muscle also has beta adrenoceptors, which can cause an increased heart rate. In this case, the patient is likely tachycardic due to increased work of breathing and salbutamol administered on the way to the hospital. Bisoprolol, on the other hand, is a beta antagonist that counteracts these effects by causing a reduction in heart rate and smooth muscle constriction, which would constrict the bronchi. This is the opposite of the desired effect and can worsen the patient’s condition. Therefore, it is important to avoid using bisoprolol in the treatment of acute asthma attacks.
-
This question is part of the following fields:
- Pharmacology
-
-
Question 29
Correct
-
A 67-year-old man visits his GP complaining of alterations in his vision. In addition to decreased sharpness, he describes object distortion, difficulty discerning colors, and occasional flashes of light. He has a history of smoking (40-pack-year) and a high BMI. Based on these symptoms, what is the most probable diagnosis?
Your Answer: Age-related macular degeneration
Explanation:Age-related macular degeneration (AMD) is characterized by a decrease in visual acuity, altered perception of colors and shades, and photopsia (flashing lights). The risk of developing AMD is higher in individuals who are older and have a history of smoking.
As a natural part of the aging process, presbyopia can cause difficulty with near vision. Smoking increases the likelihood of developing cataracts, which can result in poor visual acuity and reduced contrast sensitivity. However, symptoms such as distortion and flashing lights are not typically associated with cataracts. Similarly, retinal detachment is unlikely given the patient’s risk factors and lack of distortion and perception issues. Since there is no mention of diabetes mellitus in the patient’s history, diabetic retinopathy is not a plausible explanation.
Age-related macular degeneration (ARMD) is a common cause of blindness in the UK, characterized by degeneration of the central retina (macula) and the formation of drusen. The risk of ARMD increases with age, smoking, family history, and conditions associated with an increased risk of ischaemic cardiovascular disease. ARMD is classified into dry and wet forms, with the latter carrying the worst prognosis. Clinical features include subacute onset of visual loss, difficulties in dark adaptation, and visual hallucinations. Signs include distortion of line perception, the presence of drusen, and well-demarcated red patches in wet ARMD. Investigations include slit-lamp microscopy, colour fundus photography, fluorescein angiography, indocyanine green angiography, and ocular coherence tomography. Treatment options include a combination of zinc with anti-oxidant vitamins for dry ARMD and anti-VEGF agents for wet ARMD. Laser photocoagulation is also an option, but anti-VEGF therapies are usually preferred.
-
This question is part of the following fields:
- Neurological System
-
-
Question 30
Incorrect
-
A 79-year-old man comes in with red, velvety lesions in his mouth. Upon biopsy, it is revealed that there is epithelial atrophy and moderate dysplasia. What is the name of this condition?
Your Answer: Leukoplakia
Correct Answer: Erythroplakia
Explanation:Pre-Malignant Conditions and Tongue Abnormalities
Erythropakia and leukoplakia are two pre-malignant conditions that affect the mouth. They are characterized by the presence of dysplastic epithelial cells that can develop into squamous cell carcinoma if left untreated. Leukoplakia is more common than erythroplakia and appears as white patches that do not move with physical rubbing. On the other hand, erythroplakia appears as red, velvety patches. Both conditions are more common in older individuals and are associated with alcohol consumption and smoking.
Glossitis is a condition that involves inflammation of the tongue. It can occur in response to various factors such as vitamin B12 deficiency, Sjögren’s syndrome, and Crohn’s disease. Macroglossia, on the other hand, is an enlargement of the tongue that can be either congenital or acquired. Congenital causes include Down syndrome and Beckwith-Weideman syndrome, while acquired causes include vascular malformations, hypothyroidism, acromegaly, and amyloidosis.
Patterson-Brown-Kelly syndrome is a rare condition that causes dysphagia. It occurs when chronic, severe iron deficiency anemia stimulates the formation of an upper esophageal web. This web can cause difficulty swallowing and may require treatment such as dilation or surgery. Overall, it is important to be aware of these various conditions and seek medical attention if any symptoms arise.
-
This question is part of the following fields:
- Clinical Sciences
-
00
Correct
00
Incorrect
00
:
00
:
00
Session Time
00
:
00
Average Question Time (
Secs)