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  • Question 1 - Which of the following physiological changes will you see in a young man...

    Correct

    • 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: 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
      71.2
      Seconds
  • Question 2 - A 65-year old patient with altered bowl movement experienced the worsening of...

    Correct

    • 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: 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
      65.6
      Seconds
  • Question 3 - When does the heart rate decrease? ...

    Correct

    • When does the heart rate decrease?

      Your Answer: Pressure on the eyeball

      Explanation:

      Various vagotonic manoeuvres (e.g. Valsalva manoeuvre, carotid sinus massage, pressure on eyeballs, ice-water facial immersion, swallowing of ice-cold water) result in increased parasympathetic tone through the vagus nerve which results in a decrease in heart rate. These manoeuvres may be clinically useful in terminating supraventricular arrhythmias.

    • This question is part of the following fields:

      • Cardiovascular
      • Physiology
      12.4
      Seconds
  • Question 4 - 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, Decrease

      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
      29.6
      Seconds
  • Question 5 - 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 reaction time of O2 with haemoglobin

      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
      20.7
      Seconds
  • Question 6 - During a normal respiratory exhalation, what is the recoil alveolar pressure? ...

    Incorrect

    • During a normal respiratory exhalation, what is the recoil alveolar pressure?

      Your Answer: +15 cmH2O

      Correct Answer: +10 cmH2O

      Explanation:

      To determine compliance of the respiratory system, changes in transmural pressures (in and out) immediately across the lung or chest cage (or both) are measured simultaneously with changes in lung or thoracic cavity volume. Changes in lung or thoracic cage volume are determined using a spirometer with transmural pressures measured by pressure transducers. For the lung alone, transmural pressure is calculated as the difference between alveolar (pA; inside) and intrapleural (ppl; outside) pressure. To calculate chest cage compliance, transmural pressure is ppl (inside) minus atmospheric pressure (pB; outside). For the combined lung–chest cage, transmural pressure or transpulmonary pressure is computed as pA – pB. pA pressure is determined by having the subject deeply inhale a measured volume of air from a spirometer. Under physiological conditions the transpulmonary or recoil pressure is always positive; intrapleural pressure is always negative and relatively large, while alveolar pressure moves from slightly negative to slightly positive as a person breathes.

    • This question is part of the following fields:

      • Physiology
      • Respiratory
      15.6
      Seconds
  • Question 7 - Gastric acid secretion is stimulated by which of the following? ...

    Incorrect

    • Gastric acid secretion is stimulated by which of the following?

      Your Answer: Somatostatin

      Correct Answer: Gastrin

      Explanation:

      Gastric acid secretion is stimulated by three factors:

      – Acetylcholine, from parasympathetic neurones of the vagus nerve that innervate parietal cells directly

      – Gastrin, produced by pyloric G-cells

      – Histamine, produced by mast cells.

      Gastric acid is inhibited by three factors:

      – Somatostatin

      – Secretin

      – Cholecystokinin

    • This question is part of the following fields:

      • Endocrine
      • Physiology
      14.9
      Seconds
  • Question 8 - Which of the following can lead to haemolytic anaemia? ...

    Incorrect

    • Which of the following can lead to haemolytic anaemia?

      Your Answer: Bone marrow aplasia

      Correct Answer: Presence of haemoglobin S

      Explanation:

      Haemoglobin S is an abnormal type of haemoglobin seen in sickle cell anaemia. This allows for the haemoglobin to crystalize within the RBC upon exposure to low partial pressures of oxygen. This results in rupture of the RBCs as they pass through microcirculation, especially in the spleen. This can cause blockage of the vessel down stream and ischaemic death of tissues, accompanied by severe pain.

    • This question is part of the following fields:

      • General
      • Physiology
      28
      Seconds
  • Question 9 - Depression of the normal coagulation system and excessive bleeding after surgery can occur...

    Incorrect

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

      Your Answer: Heart disease

      Correct 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
      16.4
      Seconds
  • Question 10 - Nephrotic syndrome is a condition that causes proteinuria, hypoalbuminemia and oedema. Which of...

    Incorrect

    • Nephrotic syndrome is a condition that causes proteinuria, hypoalbuminemia and oedema. Which of the following is the cause of the oedema in these patients?

      Your Answer:

      Correct Answer: Decreased oncotic pressure

      Explanation:

      The glomeruli of the kidneys are the parts that normally filter the blood. They consist of capillaries that are fenestrated and allow fluid, salts and other small solutes to flow through, but normally not proteins. In nephrotic syndrome, the glomeruli become damaged allowing small proteins, such as albumin to pass through the kidneys into urine. Oedema usually occurs due to salt and water retention by the diseased kidneys as well as due to the reduced colloid oncotic pressure (because of reduced albumin in the plasma). Lower serum oncotic pressure causes fluid to accumulate in the interstitial tissues.

    • This question is part of the following fields:

      • Physiology
      • Renal
      0
      Seconds

SESSION STATS - PERFORMANCE PER SPECIALTY

Physiology (8/9) 89%
Respiratory (2/3) 67%
General (3/3) 100%
Cardiovascular (1/1) 100%
Endocrine (1/1) 100%
Renal (1/1) 100%
Passmed