00
Correct
00
Incorrect
00 : 00 : 00
Session Time
00 : 00
Average Question Time ( Secs)
  • Question 1 - Bile salt reuptake principally occurs where? ...

    Correct

    • Bile salt reuptake principally occurs where?

      Your Answer: In the ileum

      Explanation:

      90 – 95% of the bile salts are absorbed from the small intestine (mostly terminal ileum and then excreted again from the liver. This is known as the enterohepatic circulation. The entire pool recycles twice per meal and approximately 6 to 8 times per day.

    • This question is part of the following fields:

      • Gastroenterology
      • Physiology
      5.9
      Seconds
  • Question 2 - A patient with a long standing lower motor neuron lesion will have: ...

    Correct

    • A patient with a long standing lower motor neuron lesion will have:

      Your Answer: Muscle wasting

      Explanation:

      Lower motor neurons (LMNs) connect the brainstem and spinal cord to muscle fibres. Damage to lower motor neurons is indicated by abnormal electromyographic potentials, fasciculations, paralysis, weakening and wasting of skeletal muscles.

    • This question is part of the following fields:

      • Neurology
      • Physiology
      4.9
      Seconds
  • Question 3 - A 45-year-old pregnant woman develops high blood pressure at 20 weeks. She complains...

    Correct

    • A 45-year-old pregnant woman develops high blood pressure at 20 weeks. She complains of headaches and swollen feet, and a test reveals proteinuria (350 mg/day). Which of the following is the most likely diagnosis?

      Your Answer: Pre-eclampsia

      Explanation:

      Pre-eclampsia (PE) is a disorder of pregnancy characterized by the onset of high blood pressure (two separate readings taken at least 6 h apart of 140/90 or more) and often a significant amount of protein in the urine (>300 mg of protein in a 24-h urine sample). While blood pressure elevation is the most visible sign of the disease, it involves generalised damage to the maternal endothelium of the kidneys and liver, with the release of vasopressive factors only secondary to the original damage. Pre-eclampsia may develop at varying times within pregnancy and its progress differs among patients; most cases present pre-term. It has no known cure apart from ending the pregnancy (induction of labour or abortion). It may also present up to 6 weeks post partum. Risk factors for pre-eclampsia include obesity, prior hypertension, older age, and diabetes mellitus.

    • This question is part of the following fields:

      • Physiology
      • Renal
      6.4
      Seconds
  • Question 4 - A 25 year old man presented with a history of headache and peripheral...

    Correct

    • A 25 year old man presented with a history of headache and peripheral cyanosis. He had been living in the Himalayas for 6 months prior to this. What is the reason for his condition?

      Your Answer: Physiological polycythaemia

      Explanation:

      Polycythaemia is a condition that results in an increase in the total number of red blood cells (RBCs) in the blood. It can be due to myeloproliferative syndrome or due to chronically low oxygen levels or rarely malignancy. In primary polycythaemia/polycythaemia vera the increase is due to an abnormality in the bone marrow, resulting in increases RBCs, white blood cells (WBCs) and platelets. In secondary polycythaemia the increase occurs due to high levels of erythropoietin either artificially or naturally. The increase is about 6-8 million/cm3 of blood. A type of secondary polycythaemia is physiological polycythaemia where people living in high altitudes who are exposed to hypoxic conditions produce more erythropoietin as a compensatory mechanism for thin oxygen and low oxygen partial pressure.

    • This question is part of the following fields:

      • General
      • Physiology
      5.4
      Seconds
  • Question 5 - The primary motor cortex is located in the: ...

    Correct

    • The primary motor cortex is located in the:

      Your Answer: Precentral gyrus

      Explanation:

      The primary motor cortex is located in the dorsal part of the precentral gyrus and the anterior bank of the central sulcus. The precentral gyrus lies anterior to the postcentral gyrus and is separated from it by a central sulcus. Its anterior border is the precentral sulcus, while inferiorly it borders to the lateral fissure (Sylvian fissure).

    • This question is part of the following fields:

      • Neurology
      • Physiology
      14.1
      Seconds
  • Question 6 - A 35-year-old ultra marathon runner becomes severely dehydrated and collapses. This patient most...

    Incorrect

    • A 35-year-old ultra marathon runner becomes severely dehydrated and collapses. This patient most likely has:

      Your Answer: Low water permeability of collecting duct tubular cells

      Correct Answer: Decreased baroreceptor firing rate

      Explanation:

      Baroreceptors are sensors located in the blood vessels of all vertebrate animals. They sense the blood pressure and relay the information to the brain, so that a proper blood pressure can be maintained. Acute dehydration results in decreased plasma volume and increased plasma osmolarity, since more water than salt is lost in sweat. The decrease in plasma volume leads to an inhibition of the baroreceptors and a lower firing rate. The increase in plasma osmolarity leads to increased ADH secretion and high plasma ADH levels, which increases water permeability of collecting duct cells. Therefore more water is reabsorbed by the kidneys and renal water excretion is low.

    • This question is part of the following fields:

      • Physiology
      • Renal
      32.2
      Seconds
  • Question 7 - Chest X-ray of a 45-year old gentleman with a week history of pleurisy...

    Incorrect

    • Chest X-ray of a 45-year old gentleman with a week history of pleurisy showed a small pneumothorax with moderate-sized pleural effusion. Arterial blood gas analysis showed p(CO2) = 23 mmHg, p(O2) = 234.5 mmHg, standard bicarbonate = 16 mmol/l. What are we most likely dealing with?

      Your Answer: Compensated metabolic acidosis

      Correct Answer: Compensated respiratory alkalosis

      Explanation:

      Normal pH with low p(CO2) and low standard bicarbonate could indicate either compensated respiratory alkalosis or a compensated metabolic acidosis. However, the history of hyperventilation for 5 days (pleurisy) favours compensated respiratory alkalosis. Compensated metabolic acidosis would have been likely in a diabetic patient with fever, vomiting and high glucose (diabetic ketoacidosis).

    • This question is part of the following fields:

      • Physiology
      • Respiratory
      57.9
      Seconds
  • Question 8 - Which of the following clinical signs will be demonstrated in a case of...

    Incorrect

    • Which of the following clinical signs will be demonstrated in a case of Brown-Séquard syndrome due to hemisection of the spinal cord at mid-thoracic level?

      Your Answer: Ipsilateral spastic paralysis, contralateral loss of vibration and proprioception (position sense) and contralateral loss of pain and temperature sensation beginning one or two segments below the lesion

      Correct Answer: Ipsilateral spastic paralysis, ipsilateral loss of vibration and proprioception (position sense) and contralateral loss of pain and temperature sensation beginning one or two segments below the lesion

      Explanation:

      Brown–Séquard syndrome results due to lateral hemisection of the spinal cord and results in a loss of motricity (paralysis and ataxia) and sensation. The hemisection of the cord results in a lesion of each of the three main neural systems: the principal upper motor neurone pathway of the corticospinal tract, one or both dorsal columns and the spinothalamic tract. As a result of the injury to these three main brain pathways the patient will present with three lesions. The corticospinal lesion produces spastic paralysis on the same side of the body (the loss of moderation by the upper motor neurons). The lesion to fasciculus gracilis or fasciculus cuneatus results in ipsilateral loss of vibration and proprioception (position sense). The loss of the spinothalamic tract leads to pain and temperature sensation being lost from the contralateral side beginning one or two segments below the lesion. At the lesion site, all sensory modalities are lost on the same side, and an ipsilateral flaccid paralysis.

    • This question is part of the following fields:

      • Neurology
      • Physiology
      36
      Seconds
  • Question 9 - Glucose is not secreted by the kidneys, and is filtered without a limit....

    Correct

    • Glucose is not secreted by the kidneys, and is filtered without a limit. What is the transport maximum for glucose?

      Your Answer: 300 mg/dl

      Explanation:

      Transport maximum (or Tm) refers to the point at which increases in concentration do not result in an increase in movement of a substance across a membrane. Glucose is not secreted, thus excretion = filtration – reabsorption. Both filtration and reabsorption are directly proportional to the concentration of glucose in the plasma. However, reabsorption has a transport maximum of about 300 mg/dl in healthy nephrons, while filtration has effectively no limit (within reasonable physiological ranges). So, if the concentration rises above 300 mg/dl, the body cannot retain all the glucose, leading to glucosuria. Glucosuria is nearly always caused by elevated blood glucose levels, most commonly due to untreated diabetes mellitus.

    • This question is part of the following fields:

      • Physiology
      • Renal
      46.7
      Seconds
  • Question 10 - In a hypertensive patient with secondary hyperaldosteronism, aldosterone is released mainly in response...

    Correct

    • In a hypertensive patient with secondary hyperaldosteronism, aldosterone is released mainly in response to:

      Your Answer: Angiotensin II

      Explanation:

      Secondary hyperaldosteronism in hypertension is either due to primary renin overproduction by the kidneys or renin overproduction secondary to decreased renal blood flow. The main stimulus for aldosterone release are adrenocorticotrophic hormone (ACTH), angiotensin II and high plasma K+ levels. Low plasma Na+ might also stimulate the adrenal cortex. Fluid overload will reduce aldosterone secretion. Atrial natriuretic peptide is secreted under conditions of expanded extracellular volume and will not lead to aldosterone secretion.

    • This question is part of the following fields:

      • Endocrinology
      • Physiology
      50.3
      Seconds
  • Question 11 - Calculate the resistance of the artery if the pressure at one end is...

    Incorrect

    • Calculate the resistance of the artery if the pressure at one end is 60 mmHg, pressure at the other end is 20 mm Hg and the flow rate in the artery is 200 ml/min.

      Your Answer: 0.5

      Correct Answer: 0.2

      Explanation:

      Flow in any vessel = Effective perfusion pressure divided by resistance, where effective perfusion pressure is the mean intraluminal pressure at the arterial end minus the mean pressure at the venous end. Thus, in the given problem, resistance = (60 − 20)/200 = 0.2 mmHg/ml per min.

    • This question is part of the following fields:

      • Cardiovascular
      • Physiology
      4.8
      Seconds
  • Question 12 - Evaluation of a 60-year old gentleman, who has been a coal miner all...

    Correct

    • Evaluation of a 60-year old gentleman, who has been a coal miner all his life and is suspected to have pulmonary fibrosis reveals the following: FEV1 of 75% (normal > 65%), arterial oxygen saturation 92%, alveolar ventilation 6000 ml/min at a tidal volume of 600 ml and a breathing rate of 12 breaths/min. There are also pathological changes in lung compliance and residual volume. Calculate his anatomical dead space.

      Your Answer: 100 ml

      Explanation:

      Dead space refers to inhaled air that does not take part in gas exchange. Because of this dead space, taking deep breaths slowly is more effective for gas exchange than taking quick, shallow breaths where a large proportion is dead space. Use of a snorkel by a diver increases the dead space marginally. Anatomical dead space refers to the gas in conducting areas such as mouth and trachea, and is roughly 150 ml (2.2 ml/kg body weight). This corresponds to a third of the tidal volume (400-500 ml). It can be measured by Fowler’s method, a nitrogen wash-out technique. It is posture-dependent and increases with increase in tidal volume. Physiological dead space is equal to the anatomical dead space plus the alveolar dead space, where alveolar dead space is the area in the alveoli where no effective exchange takes place due to poor blood flow in capillaries. This physiological dead space is very small normally (< 5 ml) but can increase in lung diseases. Physiological dead space can be measured by Bohr’s method. Total ventilation per minute (minute ventilation) is given by the product of tidal volume and the breathing rate. Here, the total ventilation is 600 ml times 12 breaths/min = 7200 ml/min. The problem mentions alveolar ventilation to be 6000 ml/min. Thus, the difference between the alveolar ventilation and total ventilation is 7200 – 6000 ml/min = 1200 ml/min, or 100 ml per breath at 12 breaths per min. This 100 ml is the dead space volume.

    • This question is part of the following fields:

      • Physiology
      • Respiratory
      104.8
      Seconds
  • Question 13 - What percentage of the cardiac output is delivered to the brain? ...

    Correct

    • What percentage of the cardiac output is delivered to the brain?

      Your Answer: 15%

      Explanation:

      Among all body organs, the brain is most susceptible to ischaemia. Comprising of only 2.5% of total body weight, the brain receives 15% of the cardiac output. Oxygen extraction is also higher with venous oxygen levels approximating 13 vol%, and arteriovenous oxygen difference of 7 vol%.

    • This question is part of the following fields:

      • Cardiovascular
      • Physiology
      2.8
      Seconds
  • Question 14 - A 70-year-old male who has smoked since his teens complains of progressive shortness...

    Correct

    • A 70-year-old male who has smoked since his teens complains of progressive shortness of breath and a persistent cough. He is diagnosed with COPD. Which of the following abnormalities is most likely to be present in his pulmonary function tests?

      Your Answer: Increased residual volume

      Explanation:

      Chronic obstructive pulmonary disease (COPD) is a type of obstructive lung disease characterized by long-term poor airflow. The main symptoms include shortness of breath and cough with sputum production. The best diagnostic test for evaluating patients with suspected chronic obstructive pulmonary disease (COPD) is lung function measured with spirometry. Key spirometrical measures may be obtained with a portable office spirometer and should include forced vital capacity (FVC) and the normal forced expiratory volume in the first second of expiration (FEV1). The ratio of FEV1 to forced vital capacity (FEV1/FVC) normally exceeds 0.75. Patients with COPD typically present with obstructive airflow. Complete pulmonary function testing may show increased total lung capacity, functional residual capacity and residual volume. A substantial loss of lung surface area available for effective oxygen exchange causes diminished carbon monoxide diffusion in the lung (DLco) in patients with emphysema. Tobacco smoking is the most common cause of COPD, with factors such as air pollution and genetics playing a smaller role.

    • This question is part of the following fields:

      • Physiology
      • Respiratory
      23.2
      Seconds
  • Question 15 - A 26-year-old female patient had the following blood report: RBC count = 4....

    Correct

    • A 26-year-old female patient had the following blood report: RBC count = 4. 0 × 106/μl, haematocrit = 27% and haemoglobin = 11 g/dl, mean corpuscular volume (MCV) = 80–100 fl, mean corpuscular haemoglobin concentration (MCHC) = 31–37 g/dl. Which of the following is correct regarding this patient’s erythrocytes:

      Your Answer: Normal MCV

      Explanation:

      MCV is the mean corpuscular volume and it is calculated from the haematocrit and the RBC count. It is normally 90 fl. Mean corpuscular haemoglobin concentration (MCHC) [g/dl] = haemoglobin [g/dl]/haematocrit = 11/0.27 = 41 g/dl and is higher than normal range (32 to 36 g/dL).

    • This question is part of the following fields:

      • General
      • Physiology
      10.4
      Seconds
  • Question 16 - Which of the following substances brings about a dilatation of the gastrointestinal resistance...

    Correct

    • Which of the following substances brings about a dilatation of the gastrointestinal resistance vessels?

      Your Answer: Vasoactive intestinal peptide

      Explanation:

      Gastric vasoconstrictors include catecholamines, angiotensin II and vasopressin. Vasodilators include vasoactive intestinal peptide and the hormones; gastrin, cholecystokinin and glucagon.

    • This question is part of the following fields:

      • Gastroenterology
      • Physiology
      43.8
      Seconds
  • Question 17 - Carbon dioxide is principally transported in the blood in which form? ...

    Incorrect

    • Carbon dioxide is principally transported in the blood in which form?

      Your Answer: Carbonic anhydrase

      Correct Answer: Bicarbonate

      Explanation:

      Carbon dioxide is transported in the blood in various forms:

      – Bicarbonate (80–90%)

      – Carbamino compounds (5–10%)

      – Physically dissolved in solution (5%).

      Carbon dioxide is carried on the haemoglobin molecule as carbamino-haemoglobin; carboxyhaemoglobin is the combination of haemoglobin with carbon monoxide.

    • This question is part of the following fields:

      • Physiology
      • Respiratory; Cardiovascular
      14
      Seconds
  • Question 18 - Skeletal muscle fibres are divided into two basic types, type I (slow-twitch fibres)...

    Incorrect

    • Skeletal muscle fibres are divided into two basic types, type I (slow-twitch fibres) and type II (fast-twitch fibres). Fast muscle fibres do which of the following:

      Your Answer: Are shorter for great strength of contraction

      Correct Answer: Use anaerobic metabolism

      Explanation:

      Skeletal muscles are divided into two types:

      1) type I also known as the slow twitch fibres. They use oxygen for their metabolism and as a result they have a high endurance potential. To support this they have abundant mitochondria and myoglobin, so they appear red/dark.

      2) type II fibres also called fast twitch fibres, are low endurance fibres used during anaerobic metabolism. They are required for short bursts of strength and cannot sustain contractions for long periods of time.

    • This question is part of the following fields:

      • General
      • Physiology
      13.4
      Seconds
  • Question 19 - A cerebellar tremor can be differentiated from a Parkinsonian tremor in that: ...

    Correct

    • A cerebellar tremor can be differentiated from a Parkinsonian tremor in that:

      Your Answer: It only occurs during voluntary movements

      Explanation:

      Cerebellar disease leads to intention tremors, which is absent at rest and appears at the onset of voluntary movements. In comparison, Parkinson’s tremor is present at rest. Frequency of tremor is a less reliable means to differentiate between the two as the oscillation amplitude of the tremor is not constant throughout a voluntary action.

    • This question is part of the following fields:

      • Neurology
      • Physiology
      14.2
      Seconds
  • Question 20 - Multiple cells were labelled using a fluorescent dye that doesn’t cross the cell...

    Correct

    • Multiple cells were labelled using a fluorescent dye that doesn’t cross the cell membrane. One cell in the middle was bleached with a light that destroys the dye, but the cell soon recovers its stain. The presence of which structures best explains this?

      Your Answer: Gap junctions

      Explanation:

      Gap junctions are attachments between cells that permit intercellular communication e.g. they permit current flow and electrical coupling between myocardial cells. They allow direct electrical transmission among cells and also permit certain substance to pass through as well. They are either homotypic, formed by two identical hemichannels or heterotypic, formed by different hemichannels.

    • This question is part of the following fields:

      • General
      • Physiology
      27.7
      Seconds
  • Question 21 - A 30 year old female suffered from mismatched transfusion induced haemolysis. Which substance...

    Correct

    • A 30 year old female suffered from mismatched transfusion induced haemolysis. Which substance will be raised in the plasma of this patient?

      Your Answer: Bilirubin

      Explanation:

      Bilirubin is a yellow pigment that is formed due to the break down of RBCs. Haemolysis results in haemoglobin that is broken down into a haem portion and globin which is converted into amino acids and used again. Haem is converted into unconjugated bilirubin in the macrophages and shunted to the liver. In the liver it is conjugated with glucuronic acid making it water soluble and thus excreted in the urine. Its normal levels are from 0.2-1 mg/dl. Increased bilirubin causes jaundice and yellowish discoloration of the skin.

    • This question is part of the following fields:

      • General
      • Physiology
      8.9
      Seconds
  • Question 22 - Diuretics that act on the ascending limb of the loop of Henle produce:...

    Correct

    • Diuretics that act on the ascending limb of the loop of Henle produce:

      Your Answer: Reduced active transport of sodium

      Explanation:

      The loop of Henlé leads from the proximal convoluted tubule to the distal convoluted tubule. Its primary function uses a counter current multiplier mechanism in the medulla to reabsorb water and ions from the urine. It can be divided into four parts:

      1. Descending limb of loop of Henlé – low permeability to ions and urea, while being highly permeable to water

      2. Thin ascending limb of loop of Henlé – not permeable to water, but it is permeable to ions

      3. Medullary thick ascending limb of loop of Henlé – sodium (Na+), potassium (K+) and chloride (Cl–) ions are reabsorbed by active transport. K+ is passively transported along its concentration gradient through a K+ channel in the basolateral aspect of the cells, back into the lumen of the ascending limb.

      4. The cortical thick ascending limb – the site of action where loop diuretics such as furosemide block the K+/Na+/2Cl− co-transporters = reduced active transport.

    • This question is part of the following fields:

      • Physiology
      • Renal
      10.4
      Seconds
  • Question 23 - what is the cause of a prolonged PT(prothrombin time)? ...

    Correct

    • what is the cause of a prolonged PT(prothrombin time)?

      Your Answer: Liver disease

      Explanation:

      PT measure the intrinsic pathway of coagulation. It determines the measure of the warfarin dose regime, liver disease and vit K deficiency status along with the clotting tendency of blood. PT measured factors are II,V,VII,X and fibrinogen. It is used along with aPTT which measure the intrinsic pathway.

    • This question is part of the following fields:

      • General
      • Physiology
      38.6
      Seconds
  • Question 24 - A brain tumour causing blockage of the hypophyseal portal system is likely to...

    Incorrect

    • A brain tumour causing blockage of the hypophyseal portal system is likely to result in an increased secretion of which of the following hormones?

      Your Answer: Adrenocorticotrophic hormone

      Correct Answer: Prolactin

      Explanation:

      The hypophyseal portal system links the hypothalamus and the anterior pituitary. With the help of this system, the anterior pituitary receives releasing and inhibitory hormones from the hypothalamus and regulates the action of other endocrine glands. One of the inhibitory hormones carried by this system is the prolactin-inhibitory hormone. In the absence of this hormone which might occur in case of a blockage of the system, prolactin secretion increases to about three times normal levels.

    • This question is part of the following fields:

      • Endocrinology
      • Physiology
      124
      Seconds
  • Question 25 - A 20-year old gentleman was brought to the emergency department with headache and...

    Correct

    • A 20-year old gentleman was brought to the emergency department with headache and nausea for 2 days. He also complained of intolerance to bright light and loud sounds. Lumbar puncture showed glucose < 45 mg/dl, protein > 5 mg/dl and neutrophil leucocytosis. The likely diagnosis is:

      Your Answer: Meningitis

      Explanation:

      Diagnosis of meningitis can be carried out with examination of cerebrospinal fluid (CSF) with a lumbar puncture (LP). In a case of bacterial meningitis, the CSF analysis will show:

      – Opening pressure: > 180 mmH2O

      – White blood cell count: 10–10 000/μl with neutrophil predominance

      – Glucose: < 40 mg/dl – CSF glucose to serum glucose ratio: < 0.4 – Protein: > 4.5 mg/dl

      – Gram stain: positive in > 60%

      – Culture: positive in > 80%

      – Latex agglutination: may be positive in meningitis due to Streptococcus pneumoniae, Neisseria meningitidis, Haemophilus influenzae, Escherichia coli and group B streptococci

      – Limulus, lysates: positive in Gram-negative meningitis

    • This question is part of the following fields:

      • Neurology
      • Physiology
      13.9
      Seconds
  • Question 26 - If the blood flow is constant, oxygen extraction by tissues will show the...

    Incorrect

    • If the blood flow is constant, oxygen extraction by tissues will show the greatest decrease due to which of the following interventions?

      Your Answer: Fever

      Correct Answer: Tissue cooling

      Explanation:

      With a constant blood flow to a given tissue bed, there will be an increase in oxygen extraction by the tissue with the following; an increase in tissue metabolism and oxygen requirements: warming (or fever), exercise, catecholamines and thyroxine. With cooling, the demand for oxygen decreases, leading to decreased oxygen extraction.

    • This question is part of the following fields:

      • Cardiovascular
      • Physiology
      54.1
      Seconds
  • Question 27 - Extracellular body fluid as compared with intracellular body fluid: ...

    Incorrect

    • Extracellular body fluid as compared with intracellular body fluid:

      Your Answer: Contains more amino acids

      Correct Answer: Is relatively rich in glucose

      Explanation:

      The percentages of body water contained in various fluid compartments add up to total body water (TBW). This water makes up a significant fraction of the human body, both by weight and by volume. Ensuring the right amount of body water is part of fluid balance, an aspect of homeostasis. The extracellular fluid (ECF) includes all fluids outside the cells. This fluid can be divided into three fluid departments: interstitial (in the tissue spaces) fluid, blood plasma and lymph, and specialised compartments called transcellular fluid. The extracellular fluid surrounds all the cells in the body and is in equilibrium with the intracellular fluid. So, its composition must remain fairly constant even though substances are passing into and out of the cells. The interstitial fluid, though called a fluid, is in a reality a gel-like composition made up of: water, proteoglycan molecules and collagen. The extracellular fluid constitutes 40% of total body water, with intracellular fluid making up the remaining 60%. It is relatively rich in glucose.

    • This question is part of the following fields:

      • Fluids & Electrolytes
      • Physiology
      25.9
      Seconds
  • Question 28 - Which type of contractions are responsible for the propulsion of chyme along the...

    Correct

    • Which type of contractions are responsible for the propulsion of chyme along the small intestine?

      Your Answer: Segmentation

      Explanation:

      Two major types of intestinal contractions are segmentation and peristalsis:

      Segmentation occurs most frequently and primarily involves circular muscle. It is essentially a contraction of 2- or 3-cm long intestinal segments while the muscle on either side of it relaxes. Chyme in the segment is displaced in both directions. As the contracted segment relaxes, the previously relaxed segments on either side may contract. This efficiently mixes the chyme with the digestive secretions and exposes the mucosal absorptive surface to the luminal contents. It also serves a propulsive function and contributes to the movement of chyme.

      Peristalsis is a propulsive wave of contraction that is initiated by intestinal distension. It is short lived and travels only a few centimetres before dying out. The combined effects of intestinal peristalsis and segmentation provide for both adequate mixing of the intestinal contents and slow, steady movement of chyme.

    • This question is part of the following fields:

      • Gastroenterology
      • Physiology
      11.5
      Seconds
  • Question 29 - Pain in the right upper quadrant of the abdomen on ingestion of a...

    Correct

    • Pain in the right upper quadrant of the abdomen on ingestion of a fatty meal is seen in a condition which involves which of the following substances?

      Your Answer: Cholecystokinin

      Explanation:

      The clinical scenario described here favours the presence of gallstones. During food ingestion, vagal discharges stimulate gallbladder contraction. Moreover, presence of fat and amino acids in the intestinal lumen stimulates the release of cholecystokinin (CCK) in the duodenum. This causes sustained gallbladder contraction and relaxation of the sphincter of Oddi. If gallstones are present, there will be inflammation in the gallbladder and CCK will aggravate it due to contractions.

    • This question is part of the following fields:

      • Gastroenterology
      • Physiology
      5.1
      Seconds
  • Question 30 - Which of the following will be affected by a lesion in the posterior...

    Incorrect

    • Which of the following will be affected by a lesion in the posterior column-medial lemniscus system?

      Your Answer: Balance

      Correct Answer: Fine touch

      Explanation:

      The posterior column–medial lemniscus (PCML) pathway is a sensory pathway that transmits fine touch and conscious proprioceptive information from the body to the brain. As the posterior columns are also known as dorsal columns, the pathway is also called the dorsal column–medial lemniscus system or DCML.

    • This question is part of the following fields:

      • Neurology
      • Physiology
      11.8
      Seconds
  • Question 31 - Where is factor VIII predominantly synthesised? ...

    Incorrect

    • Where is factor VIII predominantly synthesised?

      Your Answer: Platelets

      Correct Answer: Vascular endothelium

      Explanation:

      Factor VIII is an important part of the coagulation cascade. Deficiency causes haemophilia A. It is synthesised predominantly by the vascular endothelium and is not affected by liver disease. In the circulation it is bound to von Willebrand factor and it forms a stable complex with it. It is activated by thrombin or factor Xa and acts as a co factor to factor IXa to activate factor X which is a co factor to factor Va. Thrombin cleaves fibrinogen in fibrin and forms a meshwork to trap RBC and platelets to form a clot.

    • This question is part of the following fields:

      • General
      • Physiology
      11.8
      Seconds
  • Question 32 - Glucose is the most important source of energy for cellular respiration. The transport...

    Incorrect

    • Glucose is the most important source of energy for cellular respiration. The transport of glucose in the renal tubular cells occurs via:

      Your Answer: Active transport

      Correct Answer: Secondary active transport with sodium

      Explanation:

      In 1960, Robert K. Crane presented for the first time his discovery of the sodium-glucose cotransport as the mechanism for glucose absorption. Glucose transport through biological membranes requires specific transport proteins. Transport of glucose through the apical membrane of renal tubular as well as intestinal epithelial cells depends on the presence of secondary active Na+–glucose symporters, SGLT-1 and SGLT-2, which concentrate glucose inside the cells, using the energy provided by co-transport of Na+ ions down their electrochemical gradient.

    • This question is part of the following fields:

      • Physiology
      • Renal
      17.6
      Seconds
  • Question 33 - A patient came into the emergency in a state of shock. His blood...

    Incorrect

    • A patient came into the emergency in a state of shock. His blood group is not known, but on testing it clotted when mixed with Type A antibodies. Which blood should be transfused?

      Your Answer: A +ve

      Correct Answer: B +ve

      Explanation:

      There are two stages to determine the blood group, known as ABO typing. The first stage is called forward typing. In this method, RBCs are mixed with two separate solutions of type A or type B antibodies to see if they agglutinate. If this blood clumps, this indicates the presence of antigens within the blood sample. For example, a sample of type B blood will clump when tested with type A antibodies as it contains type B antigens. Group B – has only the B antigen on red cells (and A antibody in the plasma)

      Group B – has only the B antigen on red cells (and A antibody in the plasma)

      Group AB – has both A and B antigens on red cells (but neither A nor B antibody in the plasma)

      Group O – has neither A nor B antigens on red cells (but both A and B antibody are in the plasma). Many people also have a Rh factor on the red blood cell’s surface. This is also an antigen and those who have it are called Rh+. Those who have not are called Rh–. A person with Rh– blood does not have Rh antibodies naturally in the blood plasma (as one can have A or B antibodies, for instance) but they can develop Rh antibodies in the blood plasma if they receive blood from a person with Rh+ blood, whose Rh antigens can trigger the production of Rh antibodies. A person with Rh+ blood can receive blood from a person with Rh– blood without any problems. The patient’s blood group is B positive as he has antigen B, antibody A and Rh antigens.

    • This question is part of the following fields:

      • General
      • Physiology
      15
      Seconds
  • Question 34 - Lung compliance is increased by: ...

    Incorrect

    • Lung compliance is increased by:

      Your Answer: Alveolar oedema

      Correct Answer: Emphysema

      Explanation:

      Lung compliance is increased by emphysema, acute asthma and increasing age and decreased by alveolar oedema, pulmonary hypertension, atelectasis and pulmonary fibrosis.

    • This question is part of the following fields:

      • Physiology
      • Respiratory
      32.8
      Seconds
  • Question 35 - A 40 year old man suffered severe trauma following an MVA. His BP...

    Incorrect

    • A 40 year old man suffered severe trauma following an MVA. His BP is 70/33 mmhg, heart rate of 140 beats/mins and very feeble pulse. He was transfused 3 units of blood resulting in his BP returning to 100/70 and his heart rate to 90 beats/min. What decreased following transfusion?

      Your Answer: Cardiac output

      Correct Answer: Total peripheral resistance

      Explanation:

      The patient is in hypovolemic shock, he is transfused with blood to replace the volume lost. It is important not only to replace fluids but stop active bleeding in resuscitation. Fluid replacement will result in a decreased sympathetic discharge and adequate ventricular filling thus reducing total peripheral resistance and increasing cardiac output and cardiac filling pressures.

    • This question is part of the following fields:

      • Cardiovascular
      • Physiology
      5.4
      Seconds
  • Question 36 - Which of the following cytokines produced by the T cell induce MHC-II proteins?...

    Incorrect

    • Which of the following cytokines produced by the T cell induce MHC-II proteins?

      Your Answer: Interleukin-1

      Correct Answer: γ-Interferon

      Explanation:

      Interferons elicit a non-specific antiviral activity by inducing specific RNA synthesis and expression of proteins in neighbouring cells. Common interferon inducers are viruses, double-stranded RNA and micro-organisms. INF-γ is produced mainly by CD4+, CD8+ T cells and less commonly by B cells and natural killer cells. INF-γ has antiviral and antiparasitic activity but its main biological activity appears to be immunomodulatory. Among its many functions are activation of macrophages and enhanced expression of MHC-II proteins or macrophages.

    • This question is part of the following fields:

      • General
      • Physiology
      42.1
      Seconds
  • Question 37 - The anatomical dead space in a patient with low oxygen saturation, is 125...

    Correct

    • The anatomical dead space in a patient with low oxygen saturation, is 125 ml, with a tidal volume of 500 ml and pa(CO2) of 40 mm Hg. The dead space was determined by Fowler's method. If we assume that the patient's lungs are healthy, what will his mixed expired CO2 tension [pE(CO2)] be?

      Your Answer: 30 mmHg

      Explanation:

      According to Bohr’s equation, VD/VT = (pA(CO2) − pE(CO2))/pA(CO2), where pE(CO2) is mixed expired CO2 and pA(CO2) is alveolar CO2pressure. Normally, the pa(CO2) is virtually identical to pA(CO2). Thus, VD/VT = (pa(CO2)) − pE(CO2)/pa(CO2). By Fowler’s method, VD/VT= 0.25. In the given problem, (pa(CO2) − pE(CO2)/pa(CO2) = (40 − pE(CO2)/40 = 0.25. Thus, pE(CO2) = 30 mmHg. If there is a great perfusion/ventilation inequality, pE(CO2) could be significantly lower than 30 mm Hg, and the patient’s physiological dead space would exceed the anatomical dead space.

    • This question is part of the following fields:

      • Physiology
      • Respiratory
      10.3
      Seconds
  • Question 38 - A 40-year old lady with a flail chest due to trauma was breathing...

    Incorrect

    • A 40-year old lady with a flail chest due to trauma was breathing with the help of a mechanical ventilator in the ICU, and was heavily sedated on muscle relaxants. Due to sudden power failure, a nurse began to hand-ventilate the patient with a Ambu bag. What change will occur in the following parameters: (Arterial p(CO2), pH) in the intervening period between power failure and hand ventilation?

      Your Answer: Decrease, No change

      Correct Answer: Increase, Decrease

      Explanation:

      Respiratory acidosis occurs due to alveolar hypoventilation which leads to increased arterial carbon dioxide concentration (p(CO2)). This in turn decreases the HCO3 –/p(CO2) and decreases pH. Respiratory acidosis can be acute or chronic. In acute respiratory acidosis, the p(CO2) is raised above the upper limit of normal (over 45 mm Hg) with low pH. However, in chronic cases, the raised p(CO2) is accompanied with a normal or near-normal pH due to renal compensation and an increased serum bicarbonate (HCO3 – > 30 mmHg). The given problem represents acute respiratory acidosis and thus, will show a increase in arterial p(CO2) and decrease in pH.

    • This question is part of the following fields:

      • Physiology
      • Respiratory
      137.2
      Seconds
  • Question 39 - A 50-year-old woman goes to the doctor complaining of myalgia, muscle cramps, and...

    Correct

    • A 50-year-old woman goes to the doctor complaining of myalgia, muscle cramps, and weakness; she is diagnosed with severe hypokalaemia. Which of the following is the most common cause of hypokalaemia?

      Your Answer: Prolonged vomiting

      Explanation:

      Potassium is one of the body’s major ions. Nearly 98% of the body’s potassium is intracellular. The ratio of intracellular to extracellular potassium is important in determining the cellular membrane potential. Small changes in the extracellular potassium level can have profound effects on the function of the cardiovascular and neuromuscular systems. Hypokalaemia may result from conditions as varied as renal or gastrointestinal (GI) losses, inadequate diet, transcellular shift (movement of potassium from serum into cells) and medications. The important causes of hypokalaemia are:

      Renal losses: renal tubular acidosis, hyperaldosteronism, magnesium depletion, leukaemia (mechanism uncertain).

      GI losses: vomiting or nasogastric suctioning, diarrhoea, enemas or laxative use, ileal loop.

      Medication effects: diuretics (most common cause), β-adrenergic agonists, steroids, theophylline, aminoglycosides.

      Transcellular shift: insulin, alkalosis.

      Severe hypokalaemia, with serum potassium concentrations of 2.5–3 meq/l, may cause muscle weakness, myalgia, tremor, muscle cramps and constipation.

    • This question is part of the following fields:

      • Fluids & Electrolytes
      • Physiology
      37.9
      Seconds
  • Question 40 - Hormones of the anterior pituitary include which of the following? ...

    Incorrect

    • Hormones of the anterior pituitary include which of the following?

      Your Answer: Thyroxin

      Correct Answer: Prolactin

      Explanation:

      The anterior pituitary gland (adenohypophysis or pars distalis) synthesizes and secretes:

      1. FSH (follicle-stimulating hormone)

      2. LH (luteinizing hormone)

      3. Growth hormone

      4. Prolactin

      5. ACTH (adrenocorticotropic hormone)

      6. TSH (thyroid-stimulating hormone).

      The posterior pituitary gland (neurohypophysis) stores and secretes 2 hormones produced by the hypothalamus:

      1. ADH (antidiuretic hormone or vasopressin)

      2. Oxytocin

    • This question is part of the following fields:

      • Endocrine
      • Physiology
      23.5
      Seconds
  • Question 41 - Which of the following is a true statement regarding secretion of gastric acid?...

    Incorrect

    • Which of the following is a true statement regarding secretion of gastric acid?

      Your Answer: Gastrin reduces gastric acid secretion

      Correct Answer: Acetylcholine increases gastric acid secretion

      Explanation:

      Gastric acid secretion is increased by acetylcholine, histamine and gastrin, with the help of cAMP as a secondary messenger. They increase H+ and Cl- secretion by increasing the number of H+/K+ ATPase molecules and Cl- channels. In contrast, gastric acid secretion is decreased by somatostatin, epidermal growth factor and prostaglandins.

    • This question is part of the following fields:

      • Gastroenterology
      • Physiology
      5.2
      Seconds
  • Question 42 - A 30 year old female presented in the emergency with an irregular pulse....

    Correct

    • A 30 year old female presented in the emergency with an irregular pulse. Her ECG showed absent P-waves with irregular RR interval. What is the most likely diagnosis?

      Your Answer: Atrial fibrillation

      Explanation:

      Atrial fibrillation is one of the most common cardiac arrhythmias. It is often asymptomatic but may present with symptoms of palpitations, fainting, chest pain and heart failure. Characteristic findings are: absence of P-waves, unorganised electrical activity in their place, irregularity of RR interval due to irregular conduction of impulses to the ventricles and if paroxysmal AF is suspected, episodes may be documented with the use of Holter monitoring

    • This question is part of the following fields:

      • Cardiovascular
      • Physiology
      40.7
      Seconds
  • Question 43 - The Henderson–Hasselbalch equation describes the derivation of pH as a measure of acidity. According to this equation,...

    Incorrect

    • The Henderson–Hasselbalch equation describes the derivation of pH as a measure of acidity. According to this equation, the buffering capacity of the system is at maximum when the number of free anions compared with undissociated acid is:

      Your Answer: One-third less

      Correct Answer: Equal

      Explanation:

      In 1908, Lawrence Joseph Henderson wrote an equation describing the use of carbonic acid as a buffer solution. Later, Karl Albert Hasselbalch re-expressed that formula in logarithmic terms, resulting in the Henderson–Hasselbalch equation. The equation is also useful for estimating the pH of a buffer solution and finding the equilibrium pH in acid–base reactions. Two equivalent forms of the equation are: pH = pKa + log10 [A–]/[HA] or pH = pKa + log10 [base]/[acid]. Here, pKa is − log10(Ka) where Ka is the acid dissociation constant, that is: pKa = –log10(Ka) = –log10 ([H3 O+][A–]/[HA]) for the reaction: HA + H2 O ≈ A– + H3 O+ In these equations, A– denotes the ionic form of the relevant acid. Bracketed quantities such as [base] and [acid] denote the molar concentration of the quantity enclosed. Maximum buffering capacity is found when pH = pKa or when the number of free anions to undissociated acid is equal and buffer range is considered to be at a pH = pKa ± 1.

    • This question is part of the following fields:

      • Fluids & Electrolytes
      • Physiology
      5.9
      Seconds
  • Question 44 - When the pitch of a sound increases, what is the physiological response seen...

    Incorrect

    • When the pitch of a sound increases, what is the physiological response seen in the listener?

      Your Answer: The amplitude of maximal basilar membrane displacement increases

      Correct Answer: The location of maximal basilar membrane displacement moves toward the base of the cochlea

      Explanation:

      An increase in the frequency of sound waves results in a change in the position of maximal displacement of the basilar membrane in the cochlea. Low pitch sound produces maximal displacement towards the cochlear apex and greatest activation of hair cells there. With an increasing pitch, the site of greatest displacement moves towards the cochlear base. However, increased amplitude of displacement, increase in the number of activated hair cells, increased frequency of discharge of units in the auditory nerve and increase in the range of frequencies to which such units respond, are all seen in increases in the intensity or a sound stimulus.

    • This question is part of the following fields:

      • Neurology
      • Physiology
      9.1
      Seconds
  • Question 45 - Which of the following conditions causes an elevation of the pH in the...

    Incorrect

    • Which of the following conditions causes an elevation of the pH in the tissues with elevated arterial CO2 content?

      Your Answer: Respiratory alkalosis

      Correct Answer: Metabolic alkalosis

      Explanation:

      Metabolic alkalosis is a metabolic condition in which the pH of tissue is elevated beyond the normal range (7.35-7.45). This is the result of decreased hydrogen ion concentration, leading to increased bicarbonate, or alternatively a direct result of increased bicarbonate concentrations. Normally, arterial pa(CO2) increases by 0.5–0.7 mmHg for every 1 mEq/l increase in plasma bicarbonate concentration, a compensatory response that is very quick. If the change in pa(CO2) is not within this range, then a mixed acid–base disturbance occurs.

    • This question is part of the following fields:

      • Fluids & Electrolytes
      • Physiology
      18.2
      Seconds
  • Question 46 - A 45-year-old man with short bowel syndrome requires parenteral nutrition. The solution of...

    Correct

    • A 45-year-old man with short bowel syndrome requires parenteral nutrition. The solution of choice for parenteral nutrition is:

      Your Answer: Crystalline amino acids

      Explanation:

      Total parenteral nutrition (TPN), is the practice of feeding a person intravenously, circumventing the gut. It is normally used in the following situations: surgery, when feeding by mouth is not possible, when a person’s digestive system cannot absorb nutrients due to chronic disease or if a person’s nutrient requirement cannot be met by enteral feeding and supplementation. A sterile bag of nutrient solution, between 500 ml and 4L, is provided. The pump infuses a small amount (0.1–10 ml/h) continuously to keep the vein open. The nutrient solution consists of water, glucose, salts, amino acids, vitamins and sometimes emulsified fats. Ideally each patient is assessed individually before commencing on parenteral nutrition, and a team consisting of doctors, nurses, clinical pharmacists and dietitians evaluate the patient’s individual data and decide what formula to use and at what rate.

    • This question is part of the following fields:

      • Fluids & Electrolytes
      • Physiology
      40.8
      Seconds
  • Question 47 - A glycogen storage disorder is characterised by increased liver glycogen with a normal...

    Incorrect

    • A glycogen storage disorder is characterised by increased liver glycogen with a normal structure and no increase in serum glucose after oral intake of a protein-rich diet. Deficiency of which of the following enzymes is responsible for this disorder?

      Your Answer: Phosphoglucomutase

      Correct Answer: Glucose-6-phosphatase

      Explanation:

      The most common glycogen storage disorder is von Gierke’s disease or glycogen storage disease type I. It results from a deficiency of enzyme glucose-6-phosphatase which affects the ability of liver to produce free glucose from glycogen and gluconeogenesis; leading to severe hypoglycaemia. There is also increased glycogen storage in the liver and kidneys causing enlargement and various problems in their functioning. The disease also causes lactic acidosis and hyperlipidaemia. The main treatment includes frequent or continuous feedings of corn-starch or other carbohydrates.

    • This question is part of the following fields:

      • Gastroenterology
      • Physiology
      14.4
      Seconds
  • Question 48 - Ventricular filling follows a delay caused by? ...

    Incorrect

    • Ventricular filling follows a delay caused by?

      Your Answer: Purkinje system

      Correct Answer: AV node

      Explanation:

      The AV node is a conducting tissue found between the atria and the ventricles of the heart. It conducts electrical signal from the atria to the ventricles and acts a delaying mechanism preventing the atria and the ventricles from contracting at the same time. This decremental conduction prevents premature ventricular contraction in cases such as atrial fibrillation. A delay in the AV node is the reason for the PR segment seen on the ECG. In certain types of supraventricular tachycardia, a person could have two AV nodes; this will cause a loop in electrical current and uncontrollably rapid heart beat. When this electricity catches up with itself, it will dissipate and return to a normal heart rate.

    • This question is part of the following fields:

      • Cardiovascular
      • Physiology
      12.8
      Seconds
  • Question 49 - A 50 year old man on warfarin therapy following insertion of a pacemaker...

    Incorrect

    • A 50 year old man on warfarin therapy following insertion of a pacemaker presented with epistaxis. Which of the following is true regarding blood coagulation?

      Your Answer: von Willebrand factor suppresses platelet adhesion

      Correct Answer: Patients with haemophilia A usually have a normal bleeding time

      Explanation:

      A prolonged bleeding time is seen in platelet disorders like thrombocytopenia. Patients with haemophilia A or B have a prolonged PTT but not a prolonged bleeding time.

      Ca2+ is necessary for coagulation.

      von Willebrand factor is an important part of the factor VIII complex and promotes platelet adhesion and aggregation.

      DIC results in depleted coagulation factors and accumulation of fibrin.

    • This question is part of the following fields:

      • General
      • Physiology
      30.1
      Seconds
  • Question 50 - The pleural cavity is the space between the two pulmonary pleurae which cover...

    Incorrect

    • The pleural cavity is the space between the two pulmonary pleurae which cover the lungs. What is the normal amount of pleural fluid?

      Your Answer: 250 ml

      Correct Answer: 10 ml

      Explanation:

      Pleural fluid is a serous fluid produced by the serous membrane covering normal pleurae. Most fluid is produced by the parietal circulation (intercostal arteries) via bulk flow and reabsorbed by the lymphatic system. The total volume of fluid present in the intrapleural space is estimated to be only 2–10 ml. A small amount of protein is present in intrapleural fluid. Normally, the rate of reabsorption increases as a physiological response to accumulating fluid.

    • This question is part of the following fields:

      • Physiology
      • Respiratory
      25.7
      Seconds

SESSION STATS - PERFORMANCE PER SPECIALTY

Gastroenterology (6/6) 100%
Physiology (34/51) 67%
Neurology (5/8) 63%
Renal (4/5) 80%
General (8/10) 80%
Respiratory (5/7) 71%
Endocrinology (1/2) 50%
Cardiovascular (3/6) 50%
Respiratory; Cardiovascular (0/1) 0%
Fluids & Electrolytes (2/5) 40%
Endocrine (0/1) 0%
Passmed