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  • Question 1 - Calculate the cardiac stroke volume of a patient whose oxygen consumption (measured by...

    Incorrect

    • Calculate the cardiac stroke volume of a patient whose oxygen consumption (measured by analysis of mixed expired gas) is 300 ml/min, arterial O2 content is 20 ml/100 ml blood, pulmonary arterial O2 content is 15 ml/100 ml blood and heart rate is 60/min.

      Your Answer: 20 ml

      Correct Answer: 100 ml

      Explanation:

      By Fick’s principle, VO2 = Q × (CA (O2) − CV (O2)) where VO2 = O2 consumption, Q = cardiac output and CA(O2) and CV(O2) are arterial and mixed venous O2 content respectively. Thus, in the given problem, 300 ml O2/min = Q × (20−15) ml O2/100 ml. Thus, Q = 6000 ml blood/min. Then, we can calculate stroke volume by dividing the cardiac output with heart rate. Thus, stroke volume = 6000 ml/min divided by 60/min stroke volume = 100 ml.

    • This question is part of the following fields:

      • Cardiovascular
      • Physiology
      81.7
      Seconds
  • Question 2 - Basal Metabolic Rate (BMR) will most likely be reduced by which of the...

    Correct

    • Basal Metabolic Rate (BMR) will most likely be reduced by which of the following?

      Your Answer: Decrease in body temperature

      Explanation:

      The basal metabolic rate (BMR) is defined as the rate of calorie consumption after an overnight fast, in the absence of any muscular activity, with the patient in a restful state. Various factors affect the BMR including weight, body surface area and age. The BMR is 30 kcal/m2 per hour at birth; at age 2, the rate is 57 kcal/m2 per hour; and at age 20, 41 kcal/m2 per hour. After this, the BMR decreases by 10% between 20-60 years of age. Women are known to have a 10% lower BMR than men (due to higher fat content). A one-degree change in body temperature leads to a 10% change in BMR in the same direction. However, shivering and increasing ambient temperature brings about a rise in BMR, and so does stress, physical activity, caffeine, theophylline and hyperthyroidism. Also, thermogenesis induced by diet results in increased metabolic rate and hence, BMR should be ideally measured after overnight fasting.

    • This question is part of the following fields:

      • Gastroenterology
      • Physiology
      26
      Seconds
  • Question 3 - Which of the following physiological changes will you see in a young man...

    Incorrect

    • Which of the following physiological changes will you see in a young man who has been trekking in the Himalayas for 3 years?

      Your Answer: Decreased myoglobin

      Correct Answer: Increased renal excretion of HCO3 –

      Explanation:

      The atmospheric pressure is lower at high altitudes as compared with sea level. This leads to a decrease in the partial pressure of oxygen. Once 2100 m (7000 feet) of altitude is reached, there is a drop in saturation of oxyhaemoglobin. The oxygen saturation of haemoglobin determines the oxygen content in the blood. The body physiological tries to adapt to high altitude by acclimatization. Immediate effects include hyperventilation, fluid loss (due to a decreased thirst drive), increase in heart rate and slightly lowered stroke volume. Long term effects include lower lactate production, compensatory alkali loss in urine, decrease in plasma volume, increased erythropoietin release and red cell mass, increased haematocrit, higher concentration of capillaries in striated muscle tissue, increase in myoglobin, increase in mitochondria, increase in aerobic enzyme concentration such as 2,3-DPG and pulmonary vasoconstriction.

    • This question is part of the following fields:

      • Physiology
      • Respiratory
      46.5
      Seconds
  • Question 4 - Calculate the stroke volume in an adult male with the following parameters:

    Heart...

    Correct

    • Calculate the stroke volume in an adult male with the following parameters:

      Heart rate 70 beats/min

      Arterial [O2] 0.24 ml O2/min

      Venous [O2] 0.16 ml O2/mi

      Whole body O2 consumption 500 ml/min

      Pulmonary diastolic pressure 15 mmHg

      Pulmonary systolic pressure 25 mmHg

      Wedge pressure 5 mmHg.

      Your Answer: 90 ml

      Explanation:

      Fick’s principle states that, VO2 = (CO × CAO2) – (CO × CVO2) where VO2 = oxygen consumption, CO = cardiac output, CAO2 = oxygen concentration of arterial blood and CVO2 = oxygen concentration of venous blood. Thus, CO = VO2/CAO2– CVO2, CO = 500/0.24–0.16, CO = 500/0.8, CO = 6.25 l/min. Cardiac output is also given by product of stroke volume and heart rate. Thus, stroke volume = cardiac output / heart rate = 6.25/70 × 1000 stroke volume = 90 ml approximately.

    • This question is part of the following fields:

      • Cardiovascular
      • Physiology
      206
      Seconds
  • Question 5 - Which type of contractions are responsible for the propulsion of chyme along the...

    Incorrect

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

      Your Answer: Peristaltic waves

      Correct 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
      10.4
      Seconds
  • Question 6 - For calculation of cardiac output by Fick's principle, which of the following vessels...

    Correct

    • For calculation of cardiac output by Fick's principle, which of the following vessels is the best source of venous blood to determine the arterial-to-venous oxygen tension difference?

      Your Answer: Pulmonary artery

      Explanation:

      Fick’s principle states that the total uptake (or release) of a substance by peripheral tissues is equal to the product of the blood flow to the peripheral tissues and the arterial– venous concentration difference (gradient) of the substance. It is used to measure the cardiac output, and the formula is Cardiac output = oxygen consumption divided by arteriovenous oxygen difference. Assuming there are no shunts across the pulmonary system, the pulmonary blood flow equals the systemic blood flow. The arterial and venous blood oxygen content is measured by sampling from the pulmonary artery (low oxygen content) and pulmonary vein (high oxygen content). Peripheral arterial blood is used as a surrogate for the pulmonary vein.

    • This question is part of the following fields:

      • Cardiovascular
      • Physiology
      52.3
      Seconds
  • Question 7 - Which of the following is responsible for the maximum increase in total peripheral...

    Incorrect

    • Which of the following is responsible for the maximum increase in total peripheral resistance on sympathetic stimulation?

      Your Answer: Veins

      Correct Answer: Arterioles

      Explanation:

      Arterioles are also known as the resistance vessels as they are responsible for approximately half the resistance of the entire systemic circulation. They are richly innervated by the autonomic nervous system and hence, will bring about the maximum increase in peripheral resistance on sympathetic stimulation.

    • This question is part of the following fields:

      • Cardiovascular
      • Physiology
      30.1
      Seconds
  • Question 8 - Which of the following is a true statement regarding the pupil? ...

    Correct

    • Which of the following is a true statement regarding the pupil?

      Your Answer: Phentolamine causes pupil constriction

      Explanation:

      A balance between the sympathetic tone to the radial fibres of the iris and parasympathetic tone to the pupillary sphincter muscle determines the pupil size. Phentolamine (α-adrenergic receptor blocker) causes pupillary constriction. Dilatation of the pupil occurs with increased sympathetic activity, decreased parasympathetic activity during darkness or block of muscarinic receptors by atropine.

    • This question is part of the following fields:

      • Neurology
      • Physiology
      96.6
      Seconds
  • Question 9 - Routine evaluation of a 38 year old gentleman showed a slightly lower arterial...

    Incorrect

    • Routine evaluation of a 38 year old gentleman showed a slightly lower arterial oxygen [pa(O2)] than the alveolar oxygen [pA(O2)]. This difference is:

      Your Answer: Is due to significant diffusion gradients

      Correct Answer: Is normal and due to shunted blood

      Explanation:

      Blood that bypasses the ventilated parts of lung and enters the arterial circulation directly is known as shunted blood. It happens in normal people due to mixing of arterial blood with bronchial and some myocardial venous blood (which drains into the left heart). Diffusion limitation and reaction velocity with haemoglobin are immeasurably small. CO2 unloading will not affect the difference between alveolar and arterial p(O2). A large VSD will result in much lower arterial O2 as compared to alveolar O2.

    • This question is part of the following fields:

      • Physiology
      • Respiratory
      85.4
      Seconds
  • Question 10 - After a severe asthma attack, a 26-year-old woman is left in a markedly...

    Incorrect

    • After a severe asthma attack, a 26-year-old woman is left in a markedly hypoxic state. In which of the following organs are the arterial beds most likely to be vasoconstricted due to the hypoxia?

      Your Answer: Skeletal muscle

      Correct Answer: Lungs

      Explanation:

      Hypoxic pulmonary vasoconstriction is a local response to hypoxia resulting primarily from constriction of small muscular pulmonary arteries in response to reduced alveolar oxygen tension. This unique response of pulmonary arterioles results in a local adjustment of perfusion to ventilation. This means that if a bronchiole is obstructed, the lack of oxygen causes contraction of the pulmonary vascular smooth muscle in the corresponding area, shunting blood away from the hypoxic region to better-ventilated regions. The purpose of hypoxic pulmonary vasoconstriction is to distribute blood flow regionally to increase the overall efficiency of gas exchange between air and blood.

    • This question is part of the following fields:

      • Physiology
      • Respiratory
      51.1
      Seconds
  • Question 11 - A patient presents with loss of pain and temperature sensation in the left...

    Correct

    • A patient presents with loss of pain and temperature sensation in the left leg. He is likely to have a lesion involving:

      Your Answer: Right lateral spinothalamic tract

      Explanation:

      The spinothalamic tract is a sensory pathway originating in the spinal cord that transmits information to the thalamus. There are two main parts of the spinothalamic tract: the lateral spinothalamic tract transmits pain and temperature and the anterior spinothalamic tract transmits touch (crude touch). The decussation of this pathway occurs at the level of the spinal cord. Hence, a unilateral lesion of the lateral spinothalamic tract causes contralateral loss of pain and temperature.

    • This question is part of the following fields:

      • Neurology
      • Physiology
      58.6
      Seconds
  • Question 12 - Which of the following is involved in vitamin B12 absorption? ...

    Correct

    • Which of the following is involved in vitamin B12 absorption?

      Your Answer: Intrinsic factor

      Explanation:

      Absorption of vitamin B12 is by an active transport process and occurs in the ileum. Most cobalamins are bound to proteins and are released in the stomach due to low pH and pepsin. The cobalamins then bind to R proteins, i.e. haptocorrin (HC) secreted from salivary glands and gastric juice. Another cobalamin binding protein is Intrinsic factor (IF) secreted from the gastric parietal cells. The cobalamin-HC complex is digested by pancreatic proteases in the intestinal lumen, and the free cobalamin then binds to IF. The complex then reaches a transmembrane receptor in the ileum and undergoes endocytosis. Cobalamin is then released intracellularly and binds to transcobalamin II (TC II). The newly formed complex then exits the ileal cell and enters the blood circulation.

    • This question is part of the following fields:

      • Gastroenterology
      • Physiology
      5.5
      Seconds
  • Question 13 - Which of the following organs is most likely to have dendritic cells? ...

    Correct

    • Which of the following organs is most likely to have dendritic cells?

      Your Answer: Skin

      Explanation:

      Dendritic cells are part of the immune system and they function mainly as antigen presenting cells. They are present in small quantities in tissues which are in contact in the external environment. Mainly in the skin and to a lesser extent in the lining of the nose, lungs, stomach and intestines. In the skin they are known as Langerhans cells.

    • This question is part of the following fields:

      • General
      • Physiology
      25.3
      Seconds
  • Question 14 - Under normal conditions, what is the major source of energy of cardiac muscles?...

    Incorrect

    • Under normal conditions, what is the major source of energy of cardiac muscles?

      Your Answer: Pyruvate

      Correct Answer: Fatty acids

      Explanation:

      Under basal conditions, most of the energy needed by cardiac muscle for metabolism is derived from fats (60%), 35% by carbohydrates, and 5% by ketones and amino acids. However, after intake of large amounts of glucose, lactate and pyruvate are mainly used. During prolonged starvation, fat acts as the primary source. 50% of the used lipids are sourced from circulating fatty acids.

    • This question is part of the following fields:

      • Cardiovascular
      • Physiology
      18
      Seconds
  • Question 15 - After a total colectomy and ileotomy, a 50-year old diabetic man who was...

    Incorrect

    • After a total colectomy and ileotomy, a 50-year old diabetic man who was a known case of diabetic nephropathy had persistent metabolic acidosis. The patient appeared well perfused, with normal vital signs and normal fluid balance. Investigations revealed:

      Sodium = 132 mmol/l

      Potassium = 6.6 mmol/l

      Creatinine = 185 μmol/l (2.16 mg/dl)

      Chloride = 109 μmol/l

      8am cortisol = 500 nmol/l (18 μg/dl)

      pH = 7.29, p(CO2) = 27 mmHg

      p(O2) = 107 mmHg

      standard bicarbonate = 12 mmol/l.

      What is the likely causes of his acidosis?

      Your Answer: Ketoacidosis

      Correct Answer: Renal tubular acidosis

      Explanation:

      Acidosis here is due to low bicarbonate. The low p(CO2) is seen in compensation. The anion gap is normal, ruling out intra-abdominal ischaemia (which leads to metabolic acidosis). If it was a gastrointestinal aetiology, low potassium would be seen. The history of diabetic nephropathy predisposes to renal tubular acidosis. Type 4 (hyporeninaemic hypoaldosteronism) is associated with high potassium and is found in diabetic and hypertensive renal disease.

    • This question is part of the following fields:

      • Physiology
      • Respiratory
      62.1
      Seconds
  • Question 16 - With respect to far accommodation, which of the following is a TRUE statement?...

    Incorrect

    • With respect to far accommodation, which of the following is a TRUE statement?

      Your Answer: The lens is rounded

      Correct Answer: The ciliary muscles are relaxed

      Explanation:

      Myopia or near-sightedness is a disease due to elongated eyeballs or too strong a lens. For far accommodation (focus of a distant object onto the retina), the lens needs to decrease its refractive power, or in other words, increase its focal length. This is done by relaxation of ciliary muscles which tightens the zonular fibres and flattening of the lens. Relaxation of the zonular fibres, rounding of the lens, shortening of the focal length and constriction of the pupil occurs during near accommodation.

    • This question is part of the following fields:

      • Neurology
      • Physiology
      40.5
      Seconds
  • Question 17 - Renin is secreted by pericytes in the vicinity of the afferent arterioles of the...

    Correct

    • Renin is secreted by pericytes in the vicinity of the afferent arterioles of the kidney from the juxtaglomerular cells. Plasma renin levels are decreased in patients with:

      Your Answer: Primary aldosteronism

      Explanation:

      Primary aldosteronism, also known as primary hyperaldosteronism or Conn’s syndrome, is excess production of the hormone aldosterone by the adrenal glands resulting in low renin levels. Most patients with primary aldosteronism (Conn’s syndrome) have an adrenal adenoma. The increased plasma aldosterone concentration leads to increased renal Na+ reabsorption, which results in plasma volume expansion. The increase in plasma volume suppresses renin release from the juxtaglomerular apparatus and these patients usually have low plasma renin levels. Salt restriction and upright posture decrease renal perfusion pressure and therefore increases renin release from the juxtaglomerular apparatus. Secondary aldosteronism is due to elevated renin levels and may be caused by heart failure or renal artery stenosis.

    • This question is part of the following fields:

      • Physiology
      • Renal
      83.8
      Seconds
  • Question 18 - A teenage Somalian boy presents with a complaint of an enlarged lower jaw....

    Correct

    • A teenage Somalian boy presents with a complaint of an enlarged lower jaw. His blood film shows blast cells and macrophages. Which virus is responsible for this?

      Your Answer: Epstein–Barr virus

      Explanation:

      Burkitt’s lymphoma is a type of non-Hodgkin’s lymphoma. Histologically it is characterised by a starry sky appearance due to numerous neoplastic macrophages which are required to clear the rapidly dividing tumour cells/blast cells. Burkitt’s lymphoma commonly affects the jaw bone, forming a huge tumour mass. It is associated with translocation of c-myc gene and has three types: 1) endemic/African type, 2)sporadic and 3)immunodeficiency-associated. The first type is strongly associated with EBV.

    • This question is part of the following fields:

      • General
      • Physiology
      13.1
      Seconds
  • Question 19 - Which of the following enzymes is secreted by the small intestinal mucosa? ...

    Correct

    • Which of the following enzymes is secreted by the small intestinal mucosa?

      Your Answer: Lactase

      Explanation:

      Lactase, an enzyme belonging to β-galactosidase family of enzymes, brings about the hydrolysis of the disaccharide lactose into galactose and glucose. In humans, it is present along the brush border membrane of the cells lining the small intestinal villi. Deficiency of lactase causes lactose intolerance.

    • This question is part of the following fields:

      • Gastroenterology
      • Physiology
      7.5
      Seconds
  • Question 20 - After having donated a unit of blood. The blood bank will prefer to...

    Correct

    • After having donated a unit of blood. The blood bank will prefer to use which of the following anticoagulants to store the blood?

      Your Answer: Citrate

      Explanation:

      Calcium is necessary for coagulation to occur. Citrate being a chelator and combining with calcium ions to form un-ionised compound will prevent coagulation. Following transfusion the citrate is removed by the liver with in a few minutes. Oxalate also works on the same principle but it is toxic to the body.

    • This question is part of the following fields:

      • General
      • Physiology
      18.8
      Seconds
  • Question 21 - Production of pain is most likely associated with: ...

    Correct

    • Production of pain is most likely associated with:

      Your Answer: Substance P

      Explanation:

      Substance P is a short-chain polypeptide that functions as a neurotransmitter and as a neuromodulator, and is thus, a neuropeptide. It has been linked with pain regulation, mood disorders, stress, reinforcement, neurogenesis, respiratory rhythm, neurotoxicity, nausea and emesis. It is also a potent vasodilator as it brings about release of nitric oxide from the endothelium. Its release can also cause hypotension.

    • This question is part of the following fields:

      • Neurology
      • Physiology
      21.8
      Seconds
  • Question 22 - 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
      43.9
      Seconds
  • Question 23 - The most important difference between interstitial fluid and plasma is the: ...

    Correct

    • The most important difference between interstitial fluid and plasma is the:

      Your Answer: Protein concentration

      Explanation:

      Interstitial fluid (or tissue fluid or intercellular fluid) is a solution that surrounds the cells of multicellular animals. It is the main component of the extracellular fluid, which also includes plasma, lymph and transcellular fluid. Plasma, the major component in blood, communicates freely with interstitial fluid through pores and intercellular clefts in capillary endothelium. Interstitial fluid consists of a water solvent containing amino acids, sugars, fatty acids, coenzymes, hormones, neurotransmitters, salts, as well as waste products from the cells. Red blood cells, platelets and plasma proteins cannot pass through the walls of the capillaries. The resulting mixture that does pass through is essentially blood plasma without the plasma proteins. Tissue fluid also contains certain types of white blood cells. Once the extracellular fluid collects into small vessels it is considered to be lymph, and the vessels that carry it back to the blood are called the lymphatic vessels. The lymphatic system returns protein and excess interstitial fluid to the circulation.

    • This question is part of the following fields:

      • Fluids & Electrolytes
      • Physiology
      22.3
      Seconds
  • Question 24 - A 56 year old gentleman, who is a chronic smoker presents to the...

    Correct

    • A 56 year old gentleman, who is a chronic smoker presents to the clinic with dyspnoea. His Chest X-ray shows intercostal space widening with increased blackening bilaterally. What is the most likely finding on his pulmonary function test?

      Your Answer: Increased total lung capacity

      Explanation:

      In patients suspected of having chronic obstructive pulmonary disease, pulmonary function testing (PFT) is useful to confirm airway obstruction, to quantify its severity and reversibility, for following disease progression and monitoring response to treatment. These tests include:

      FEV1 – volume of air forcefully expired during the first second after a full breath

      Forced vital capacity (FVC) – total volume of air expired with maximal force and flow-volume loops. The hallmark of airway obstruction is reduction of FEV1, FVC and the ratio of FEV1/FVC, with a concave pattern in expiratory tracing on the flow-volume loop. FEV1 and forced vital capacity (FVC) are easily measured with office spirometry and are useful to assess the severity of disease. Other parameters include increased total lung capacity, functional residual capacity and residual volume, which can help distinguish chronic obstructive pulmonary disease (COPD) from restrictive pulmonary disease where these values are lower than normal. Along with these, other tests are decreased vital capacity; and decreased diffusing capacity for carbon monoxide (DLCO). DLCO is non-specific and can be low in other disorders that affect the pulmonary vascular bed, such as interstitial lung disease. DLCO is however useful to distinguish COPD from asthma, in which DLCO is normal or elevated.

    • This question is part of the following fields:

      • Physiology
      • Respiratory
      48.2
      Seconds
  • Question 25 - 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: Histamine 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
      16.2
      Seconds
  • Question 26 - Which of these substances is secreted by pericytes in the juxtaglomerular cells? ...

    Correct

    • Which of these substances is secreted by pericytes in the juxtaglomerular cells?

      Your Answer: Renin

      Explanation:

      The juxtaglomerular cells synthesise, store and secrete the enzyme renin in the kidney. They are specialised smooth muscle cells in the wall of the afferent arteriole that delivers blood to the glomerulus and thus play a critical role in the renin– angiotensin system and so in renal autoregulation.

    • This question is part of the following fields:

      • Physiology
      • Renal
      8
      Seconds
  • Question 27 - A 65-year old patient with altered bowl movement experienced the worsening of...

    Incorrect

    • A 65-year old patient with altered bowl movement experienced the worsening of shortness of breath and exertional chest pains over the course of 8 weeks. Examination shows pallor and jugular venous distension. Furthermore, a test of the stool for occult blood is positive. Laboratory studies show:

      Haemoglobin 7.4 g/dl

      Mean corpuscular volume 70 fl Leukocyte count 5400/mm3

      Platelet count 580 000/mm3 Erythrocyte sedimentation 33 mm/h

      A blood smear shows hypochromic, microcytic RBCs with moderate poikilocytosis. Which of the following is the most likely diagnosis?

      Your Answer: Amyloidosis

      Correct Answer: Iron deficiency anaemia

      Explanation:

      Iron deficiency anaemia is the most common type of anaemia. It can occur due to deficiency of iron due to decreased intake or due to faulty absorption. An MCV less than 80 will indicated iron deficiency anaemia. On the smear the RBC will be microcytic hypochromic and will also show piokilocytosis. iron profiles tests are important to make a diagnosis. Clinically the patient will be pale and lethargic.

    • This question is part of the following fields:

      • General
      • Physiology
      98.3
      Seconds
  • Question 28 - Which of the following is a likely consequence of severe diarrhoea? ...

    Correct

    • Which of the following is a likely consequence of severe diarrhoea?

      Your Answer: A decrease in the sodium content of the body

      Explanation:

      Diarrhoea can occur due to any of the numerous aetiologies, which include infectious, drug-induced, food related, surgical, inflammatory, transit-related or malabsorption. Four mechanisms have been implicated in diarrhoea: increased osmotic load, increased secretion, inflammation and decreased absorption time. Diarrhoea can result in fluid loss with consequent dehydration, electrolyte loss (Na+, K+, Mg2+, Cl–) and even vascular collapse. Loss of bicarbonate ions can lead to a metabolic acidosis.

    • This question is part of the following fields:

      • Gastroenterology
      • Physiology
      22.4
      Seconds
  • Question 29 - 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: Disseminated intravascular coagulation (DIC) results in depletion of fibrin split products

      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
      73.3
      Seconds
  • Question 30 - Calculate the resistance of the artery if the pressure at one end is...

    Correct

    • 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: 0.2

      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
      302.1
      Seconds
  • Question 31 - An experiment was conducted in which the skeletal muscle protein (not smooth muscle)...

    Incorrect

    • An experiment was conducted in which the skeletal muscle protein (not smooth muscle) involved in contraction was selectively inhibited. Which protein was inhibited?

      Your Answer: Actin

      Correct Answer: Troponin

      Explanation:

      The mechanism of contraction of smooth muscles is different from that of skeletal muscles in which the contractile protein is troponin whilst in smooth muscle contraction is a protein called calmodulin. Calmodulin reacts with calcium ions and stimulates the formation of myosin crossbridges.

    • This question is part of the following fields:

      • General
      • Physiology
      31.1
      Seconds
  • Question 32 - Which of the following clinical signs will be demonstrated in a case of...

    Correct

    • 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, 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
      480.7
      Seconds
  • Question 33 - How are amino acids transported across the luminal surface of the small intestinal...

    Incorrect

    • How are amino acids transported across the luminal surface of the small intestinal epithelium?

      Your Answer: Simple diffusion

      Correct Answer: Co-transport with sodium ions

      Explanation:

      Once complex peptides are broken down into amino acids by the peptidases present in the brush border of small intestine, they are ready for absorption by at least four sodium-dependent amino acid co-transporters – one each for acidic, basic, neutral and amino acids, present on the luminal plasma membrane. These transporters first bind sodium and can then bind the amino acids. Thus, amino acid absorption is totally dependent on the electrochemical gradient of sodium across the epithelium. The basolateral membrane in contrast, possesses additional transporters to carry amino acids from the cell into the blood, but these are sodium-independent.

    • This question is part of the following fields:

      • Gastroenterology
      • Physiology
      31
      Seconds
  • Question 34 - 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: Growth 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
      26.8
      Seconds
  • Question 35 - A 78-year-old diabetic man undergoes renal function tests. Which of the following substances...

    Incorrect

    • A 78-year-old diabetic man undergoes renal function tests. Which of the following substances will be the most accurate for measuring glomerular filtration rate (GFR)?

      Your Answer: Creatinine

      Correct Answer: Inulin

      Explanation:

      Glomerular filtration rate (GFR) is the volume of fluid filtered from the renal glomerular capillaries into the Bowman’s capsule per unit time. Clinically, this is often measured to determine renal function. Inulin was originally used as it is not reabsorbed by the kidney after glomerular filtration, therefore its rate of excretion is directly proportional to the rate of filtration of water and solutes across the glomerular filter. However, in clinical practice, creatinine clearance is used to measure GFR. Creatinine is an endogenous molecule, synthesised in the body, that is freely filtered by the glomerulus (but also secreted by the renal tubules in very small amounts). Creatinine clearance exceeds GFR due to creatinine secretion, and is therefore a close approximation of the GFR.

    • This question is part of the following fields:

      • Physiology
      • Renal
      26.1
      Seconds
  • Question 36 - Renal function is an indication of the state of the kidney, measured by glomerular...

    Correct

    • Renal function is an indication of the state of the kidney, measured by glomerular filtration rate (GFR). In a healthy person, GFR would be greatly increased by: 

      Your Answer: Substantial increases in renal blood flow

      Explanation:

      An increase in the rate of renal blood flow (RBF) greatly increases the glomerular filtration rate (GFR). The more plasma available (from increased RBF), the more filtrate is formed. Glomerular filtration rate (GFR) is the volume of fluid filtered from the renal (kidney) glomerular capillaries into the Bowman’s capsule per unit time. Central to the physiologic maintenance of GFR is the differential basal tone of the afferent and efferent arterioles.

    • This question is part of the following fields:

      • Physiology
      • Renal
      62.3
      Seconds
  • Question 37 - Which antibiotic acts by inhibiting protein synthesis? ...

    Incorrect

    • Which antibiotic acts by inhibiting protein synthesis?

      Your Answer: Penicillin

      Correct Answer: Erythromycin

      Explanation:

      Penicillins and cephalosporins (e.g. cefuroxime, cefotaxime, ceftriaxone) inhibit bacterial cell wall synthesis through the inhibition of peptidoglycan cross-linking.

      Macrolides (e.g. erythromycin), tetracyclines, aminoglycosides and chloramphenicol act by interfering with bacterial protein synthesis.

      Sulphonamides (e.g. trimethoprim, co-trimoxazole) work by inhibiting the synthesis of nucleic acid

    • This question is part of the following fields:

      • Pharmacology; Microbiology
      • Physiology
      27
      Seconds
  • Question 38 - A 35-year-old woman is in a comatose state following a traumatic head injury,...

    Correct

    • A 35-year-old woman is in a comatose state following a traumatic head injury, and is receiving intravenous (IV) antibiotics and IV fluids containing saline and 5% dextrose. A serum biochemistry analysis is performed five days later which shows a low serum potassium level. This is most likely to be due to:

      Your Answer: Nothing per oral regimen

      Explanation:

      In this patient the cause for hypokalaemia is insufficient consumption of potassium as she is nil-per mouth with no intravenous supplementation. Parenteral nutrition has been used for comatose patients, although enteral feeding is usually preferable, and less prone to complications.

    • This question is part of the following fields:

      • Fluids & Electrolytes
      • Physiology
      56.3
      Seconds
  • Question 39 - Which organ is most vulnerable to haemorrhagic shock? ...

    Correct

    • Which organ is most vulnerable to haemorrhagic shock?

      Your Answer: Kidneys

      Explanation:

      At rest, the brain receives 15% cardiac output, muscles 15%, gastrointestinal tract 30% and kidneys receive 20%. However, if normalised by weight, the largest specific blood flow is received by the kidneys at rest (400 ml/min x 100g), making them highly vulnerable in the case of a haemorrhagic shock.

    • This question is part of the following fields:

      • Cardiovascular
      • Physiology
      11
      Seconds
  • Question 40 - In a hypertensive patient with secondary hyperaldosteronism, aldosterone is released mainly in response...

    Incorrect

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

      Your Answer: Atrial natriuretic peptide

      Correct 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
      18.7
      Seconds
  • Question 41 - Skeletal muscle fibres are divided into two basic types, type I (slow-twitch fibres)...

    Correct

    • 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: 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
      35.5
      Seconds
  • Question 42 - Normally, the O2 transfer in the lungs from alveolar to capillary is perfusion-limited....

    Correct

    • Normally, the O2 transfer in the lungs from alveolar to capillary is perfusion-limited. In which of the following situations does it become a diffusion-limited process?

      Your Answer: Pulmonary oedema

      Explanation:

      Normally, the transfer of oxygen from air spaces to blood takes place across the alveolar-capillary membrane by simple diffusion and depends entirely on the amount of blood flow (perfusion-limited process). Diseases that affect this diffusion will transform the normal process to a diffusion limited process. Thus, the diseases which cause a thickened barrier (such as pulmonary oedema due to increased extravascular lung water or asbestosis) will limit the diffusion of oxygen. Chronic obstructive lung diseases will have little effect on diffusion. Inhaling hyperbaric gas mixtures might overcome the diffusion limitation in patients with mild asbestosis or interstitial oedema, by increasing the driving force. Strenuous (not mild) exercise might also favour diffusion limitation and decrease passage time. Increasing the rate of ventilation will not have this affect but will only maintain a high oxygen gradient from air to blood.

    • This question is part of the following fields:

      • Physiology
      • Respiratory
      29.1
      Seconds
  • Question 43 - A 49-year-old woman with acute renal failure has a total plasma [Ca2+] =...

    Incorrect

    • A 49-year-old woman with acute renal failure has a total plasma [Ca2+] = 2. 5 mmol/l and a glomerular filtration rate of 160 l/day. What is the estimated daily filtered load of calcium?

      Your Answer: 64 mmol/day

      Correct Answer: 240 mmol/day

      Explanation:

      Calcium is the most abundant mineral in the human body. The average adult body contains in total approximately 1 kg of calcium of which 99% is in the skeleton in the form of calcium phosphate salts. The extracellular fluid (ECF) contains approximately 22 mmol, of which about 9 mmol is in the plasma. About 40% of total plasma Ca2+ is bound to proteins and not filtered at the glomerular basement membrane. Therefore, the estimated daily filtered load is 1.5 mmol/l × 160 l/day = 240 mmol/day. The exact amount of free versus total Ca2+ depends on the blood pH: free Ca2+ increases during acidosis and decreases during alkalosis.

    • This question is part of the following fields:

      • Physiology
      • Renal
      39.4
      Seconds
  • Question 44 - A 56-year-old woman weighs 75 kg. In this patient, total body water, intracellular...

    Incorrect

    • A 56-year-old woman weighs 75 kg. In this patient, total body water, intracellular fluid and extracellular fluid are respectively:

      Your Answer: 45 l, 35 l, 10 l

      Correct Answer: 45 l, 30 l, 15 l

      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. The total body water (TBW) content of humans is approximately 60% of body weight. Two-thirds is located in the intracellular and one-third in the extracellular compartment. So, in a 75-kg individual, TBW = 60 × 75/100 = 45 l. Intracellular content = 2/3 × 45 = 30 l and extracellular content = 1/3 × 45 = 15 l.

    • This question is part of the following fields:

      • Fluids & Electrolytes
      • Physiology
      35.6
      Seconds
  • Question 45 - What is a major source of fuel being oxidised by the skeletal muscles...

    Incorrect

    • What is a major source of fuel being oxidised by the skeletal muscles of a man who has undergone starvation for 7 days?

      Your Answer: Muscle glycogen

      Correct Answer: Serum fatty acids

      Explanation:

      Starvation is the most extreme form of malnutrition. Prolonged starvation can lead to permanent organ damage and can be fatal. Starved individuals eventually lose significant fat and muscle mass as the body uses these for energy.

    • This question is part of the following fields:

      • Gastroenterology
      • Physiology
      34.1
      Seconds
  • Question 46 - The most likely cause of prominent U waves on the electrocardiogram (ECG) of...

    Incorrect

    • The most likely cause of prominent U waves on the electrocardiogram (ECG) of a patient is:

      Your Answer: Hypocalcaemia

      Correct Answer: Hypokalaemia

      Explanation:

      The U-wave, not always visible in ECGs, is thought to represent repolarisation of papillary muscles or Purkinje fibres. When seen, it is very small and occurs after the T-wave. Inverted U-waves indicate myocardial ischaemia or left ventricular volume overload. Prominent U-waves are most commonly seen in hypokalaemia. Other causes include hypercalcaemia, thyrotoxicosis, digitalis exposure, adrenaline and class 1A and 3 anti-arrhythmic agents. It can also be seen in congenital long-QT syndrome and in intracranial haemorrhage.

    • This question is part of the following fields:

      • Cardiovascular
      • Physiology
      14.9
      Seconds
  • Question 47 - What percentage of the cardiac output is delivered to the brain? ...

    Incorrect

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

      Your Answer: 35%

      Correct 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
      9
      Seconds
  • Question 48 - Depression of the normal coagulation system and excessive bleeding after surgery can occur...

    Correct

    • Depression of the normal coagulation system and excessive bleeding after surgery can occur in which of the following medical conditions?

      Your Answer: Liver disease

      Explanation:

      As most of the coagulation factors are synthesized in the liver, liver diseases like hepatitis or cirrhosis will depress the coagulation system. Vitamin K deficiency can also decrease the production of vitamin K dependent coagulation factors VII, XI, X and prothrombin.

    • This question is part of the following fields:

      • General
      • Physiology
      9.7
      Seconds
  • Question 49 - The blood-brain barrier is a membrane that separates the circulating blood from the...

    Incorrect

    • The blood-brain barrier is a membrane that separates the circulating blood from the brain extracellular fluid in the central nervous system (CNS). Which of the following statements regarding the blood– brain barrier is CORRECT?

      Your Answer: It permits carbon dioxide to pass via facilitated diffusion

      Correct Answer: It breaks down in areas of brain that are infected

      Explanation:

      The blood–brain barrier is a membrane that controls the passage of substances from the blood into the central nervous system. It is a physical barrier between the local blood vessels and most parts of the central nervous system and stops many substances from travelling across it. During meningitis, the blood–brain barrier may be disrupted. This disruption may increase the penetration of various substances (including either toxins or antibiotics) into the brain. A few regions in the brain, including the circumventricular organs, do not have a blood–brain barrier.

    • This question is part of the following fields:

      • Fluids & Electrolytes
      • Physiology
      38.8
      Seconds
  • Question 50 - A 23 year old woman is Rh -ve and she delivered a baby...

    Correct

    • A 23 year old woman is Rh -ve and she delivered a baby with a Rh+ blood group. What measure can be performed to prevent Rh incompatibility in the next pregnancy?

      Your Answer: Immunoglobulin D

      Explanation:

      Rh disease is also known as erythroblastosis fetalis and is a disease of the new-born. In mild states it can cause anaemia with reticulocytosis and in severe forms causes severe anaemia, morbus hemolytcus new-born and hydrops fetalis. RBCs of the Rh+ baby can cross the placenta and enter into the maternal blood. As she is Rh- her body will form antibodies against the D antigen which will pass through the placenta in subsequent pregnancies.

    • This question is part of the following fields:

      • General
      • Physiology
      10.7
      Seconds

SESSION STATS - PERFORMANCE PER SPECIALTY

Cardiovascular (4/9) 44%
Physiology (26/50) 52%
Gastroenterology (4/8) 50%
Respiratory (2/6) 33%
Neurology (4/5) 80%
General (6/9) 67%
Renal (3/5) 60%
Fluids & Electrolytes (3/5) 60%
Endocrinology (0/2) 0%
Pharmacology; Microbiology (0/1) 0%
Passmed