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  • Question 1 - A 50-year-old man is diagnosed with emphysema and cirrhosis of the liver. Which...

    Correct

    • A 50-year-old man is diagnosed with emphysema and cirrhosis of the liver. Which of the following condition may be the cause of both cirrhosis and emphysema in this patient?

      Your Answer: Alpha1-antitrypsin deficiency

      Explanation:

      Alpha-1 antitrypsin (A1AT) deficiency is a condition characterised by the lack of a protein that protects the lungs and liver from damage, called alpha1-antytripsin. The main complications of this condition are liver diseases such as cirrhosis and chronic hepatitis, due to accumulation of abnormal alpha 1-antytripsin and emphysema due to loss of the proteolytic protection of the lungs.

    • This question is part of the following fields:

      • Pathology
      • Respiratory
      114.9
      Seconds
  • Question 2 - Whilst snorkelling, a 30-year old gentleman has the respiratory rate of 10/min, tidal...

    Correct

    • Whilst snorkelling, a 30-year old gentleman has the respiratory rate of 10/min, tidal volume of 550 ml and an effective anatomical dead space of 250 ml. Which of the following will bring about a maximum increase in his alveolar ventilation?

      Your Answer: A 2x increase in tidal volume and a shorter snorkel

      Explanation:

      Alveolar ventilation = respiratory rate × (tidal volume − anatomical dead space volume). Increase in respiratory rate simply causes movement of air in the anatomical dead space, with no contribution to the alveolar ventilation. By use of a shorter snorkel, the effective anatomical dead space will decrease and will cause a maximum rise in alveolar ventilation along with doubling of tidal volume.

    • This question is part of the following fields:

      • Physiology
      • Respiratory
      21.9
      Seconds
  • Question 3 - Lung compliance is increased by: ...

    Correct

    • Lung compliance is increased by:

      Your 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
      20.2
      Seconds
  • Question 4 - The chest X-ray of an 10-year-old boy, that presented with low-grade fever and...

    Incorrect

    • The chest X-ray of an 10-year-old boy, that presented with low-grade fever and cough, revealed hilar enlargement and parenchymal consolidation in the middle lobes. These X-ray findings are more typical for which of the following diagnoses?

      Your Answer: Secondary tuberculosis

      Correct Answer: Pulmonary tuberculosis

      Explanation:

      Primary pulmonary tuberculosis is seen in patients exposed to Mycobacterium tuberculosis for the firs time. The main radiographic findings in primary pulmonary tuberculosis include homogeneous parenchymal consolidation typically in the lower and middle lobes, lymphadenopathy, miliary opacities and pleural effusion.

    • This question is part of the following fields:

      • Pathology
      • Respiratory
      25.2
      Seconds
  • Question 5 - A 79-year-old has been bedridden for 2 months after suffering from a stroke....

    Correct

    • A 79-year-old has been bedridden for 2 months after suffering from a stroke. She suddenly developed shortness of breath and chest pain, and was diagnosed with a pulmonary embolism. Which of the following is most likely to increase in this case?

      Your Answer: Ventilation/perfusion ratio

      Explanation:

      Pulmonary embolism (PE) is a blockage of an artery in the lungs by an embolus that has travelled from elsewhere in the body through the bloodstream. The change in cardiopulmonary function is proportional to the extent of the obstruction, which varies with the size and number of emboli obstructing the pulmonary arteries. The resulting physiological changes may include pulmonary hypertension with right ventricular failure and shock, dyspnoea with tachypnoea and hyperventilation, arterial hypoxaemia and pulmonary infarction. Consequent alveolar hyperventilation is manifested by a lowered pa(CO2). After occlusion of the pulmonary artery, areas of the lung are ventilated but not perfused, resulting in wasted ventilation with an increased ventilation/perfusion ratio – the physiological hallmark of PE – contributing to a further hyperventilatory state. The risk of blood clots is increased by cancer, prolonged bed rest, smoking, stroke, certain genetic conditions, oestrogen-based medication, pregnancy, obesity, and post surgery.

    • This question is part of the following fields:

      • Physiology
      • Respiratory
      17.3
      Seconds
  • Question 6 - The anatomical dead space in a patient with low oxygen saturation, is 125...

    Incorrect

    • 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: 10 mmHg

      Correct 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
      28.5
      Seconds
  • Question 7 - If a catheter is placed in the main pulmonary artery of a healthy...

    Incorrect

    • If a catheter is placed in the main pulmonary artery of a healthy 30-year-old woman, which of the following will be its mean pulmonary arterial pressure?

      Your Answer: 110 mmHg

      Correct Answer: 15 mmHg

      Explanation:

      The pulmonary artery pressure (PA pressure) is a measure of the blood pressure found in the main pulmonary artery. The hydrostatic pressure of the pulmonary circulation refers to the actual pressure inside pulmonary vessels relative to atmospheric pressure. Hydrostatic (blood pressure) in the pulmonary vascular bed is low compared with that of similar systemic vessels. The mean pulmonary arterial pressure is about 15 mmHg (ranging from about 13 to 19 mmHg) and is much lower than the average systemic arterial pressure of 90 mmHg.

    • This question is part of the following fields:

      • Physiology
      • Respiratory
      22.9
      Seconds
  • Question 8 - A 47-year-old male smoker, who had been self-medicating with oral steroids for the...

    Incorrect

    • A 47-year-old male smoker, who had been self-medicating with oral steroids for the last two years due to persistent breathlessness presented to the doctor complaining of a productive cough, fever and chest pain. A chest X-ray revealed bilateral patchy opacities. He was diagnosed with bilateral bronchopneumonia. Which of these organisms is most probably causing these findings?

      Your Answer: Streptococcus pneumoniae

      Correct Answer: Nocardia asteroides

      Explanation:

      Nocardia is a Gram-positive aerobic actinomycete. Several species have been identified but the most common human pathogen is Nocardia asteroides. The predominant clinical finding in the majority of patients affected by nocardiosis is pulmonary disease. Predisposing factors for pulmonary nocardiosis include leukaemia, human immunodeficiency virus (HIV) infection, organ transplantation, diabetes and receiving prolonged corticosteroids.

    • This question is part of the following fields:

      • Pathology
      • Respiratory
      35
      Seconds
  • Question 9 - A 54-year-old woman is re-admitted to the hospital with shortness of breath and...

    Correct

    • A 54-year-old woman is re-admitted to the hospital with shortness of breath and sharp chest pain 2 weeks after surgical cholecystectomy. The most probable cause of these clinical findings is:

      Your Answer: Pulmonary embolus

      Explanation:

      Pulmonary embolism is caused by the sudden blockage of a major lung blood vessel, usually by a blood clot. Symptoms include sudden sharp chest pain, cough, dyspnoea, palpitations, tachycardia or loss of consciousness. Risk factors for developing pulmonary embolism include long periods of inactivity, recent surgery, trauma, pregnancy, oral contraceptives, oestrogen replacement, malignancies and venous stasis.

    • This question is part of the following fields:

      • Pathology
      • Respiratory
      17.3
      Seconds
  • Question 10 - A 29-year-old woman presents to the doctor complaining of cough, shortness of breath,...

    Incorrect

    • A 29-year-old woman presents to the doctor complaining of cough, shortness of breath, fever and weight loss. Chest X-ray revealed bilateral hilar and mediastinal lymph node enlargement and bilateral pulmonary opacities. Non-caseating granulomas were found on histological examination. The most likely diagnosis is:

      Your Answer: Tuberculosis

      Correct Answer: Sarcoidosis

      Explanation:

      Sarcoidosis is an inflammatory disease of unknown aetiology that affects multiple organs but predominantly the lungs and intrathoracic lymph nodes. Systemic and pulmonary symptoms may both be present. Pulmonary involvement is confirmed by a chest X-ray and other imaging studies. The main histological finding is the presence of non-caseating granulomas.

    • This question is part of the following fields:

      • Pathology
      • Respiratory
      14.7
      Seconds
  • Question 11 - Work of breathing (WOB) is the energy expended to inhale and exhale a breathing gas. Normally, maximal amount of work...

    Correct

    • Work of breathing (WOB) is the energy expended to inhale and exhale a breathing gas. Normally, maximal amount of work of breathing is required to overcome:

      Your Answer: Elastic lung compliance

      Explanation:

      The forces of elastance (compliance), frictional resistance and inertia have been identified as the forces that oppose lung inflation and deflation. The normal relaxed state of the lung and chest is partially empty. Further exhalation requires muscular work. Inhalation is an active process requiring work. About 60–66% of the total work performed by the respiratory muscles is used to overcome the elastic or compliance characteristics of the lung–chest cage, 30–35% is used to overcome frictional resistance and only 2–5% of the work is used for inertia.

    • This question is part of the following fields:

      • Physiology
      • Respiratory
      16.7
      Seconds
  • Question 12 - Abnormal breathing is noticed in a of victim of a road traffic accident,...

    Correct

    • Abnormal breathing is noticed in a of victim of a road traffic accident, who sustained a head injury. The breathing pattern is characterised by alternate periods of waxing and waning tidal volumes with interspersed periods of apnoea. This breathing pattern is known as:

      Your Answer: Cheyne–Stokes breathing

      Explanation:

      Cheyne-Stokes breathing is an abnormal breathing pattern with breathing periods of gradually waxing and waning tidal volumes, with apnoeic periods interspersed. It is usually the first breathing pattern to be seen with a rise in intracranial pressure and is caused by failure of the respiratory centre in the brain to compensate quickly enough to changes in serum partial pressure of oxygen and carbon dioxide. The aetiology includes strokes, head injuries, brain tumours and congestive heart failure. It is also a sign of altitude sickness in normal people, a symptom of carbon monoxide poisoning or post-morphine administration. Biot’s respiration (cluster breathing) is characterized by cluster of quick, shallow inspirations followed by regular or irregular periods of apnoea. It is different from ataxic respiration, which has completely irregular breaths and pauses. It results due to damage to the medulla oblongata by any reason (stroke, uncal herniation, trauma) and is a poor prognostic indicator. Kussmaul breathing, also known as ‘air hunger’, is basically respiratory compensation for metabolic acidosis and is characterized by quick, deep and laboured breathing. It is most often seen in in diabetic ketoacidosis. Due to forced inspiratory rate, the patients will show a low p(CO2). Ondine’s curse is congenital central hypoventilation syndrome or primary alveolar hypoventilation, which can be fatal and leads to sleep apnoea. It involves an inborn failure to control breathing autonomically during sleep and in severe cases, can affect patients even while awake. It is known to occur in 1 in 200000 liveborn children. Treatment includes tracheostomies and life long mechanical ventilator support.

    • This question is part of the following fields:

      • Physiology
      • Respiratory
      23
      Seconds
  • Question 13 - Chest X-ray of a 45-year old gentleman with a week history of pleurisy...

    Correct

    • 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 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
      88.5
      Seconds
  • Question 14 - A woman that presented with dyspnoea, chest pain and cough was found to...

    Correct

    • A woman that presented with dyspnoea, chest pain and cough was found to have a serous pleural effusion. This finding is most likely to be associated with which of the following conditions?

      Your Answer: Congestive heart failure

      Explanation:

      A pleural effusion is defined as an abnormal collection of fluid in the pleural space. Pleural effusion can result from excess fluid production or decreased absorption or both. Thoracentesis and laboratory testing help determine the origin of the accumulated fluid. Serous fluid accumulation in the pleural space indicates the presence of a hydrothorax and is most likely to develop secondary to congestive heart failure.

    • This question is part of the following fields:

      • Pathology
      • Respiratory
      162.6
      Seconds
  • Question 15 - 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
      38.7
      Seconds
  • Question 16 - 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
      24
      Seconds
  • Question 17 - The bronchial circulation is a part of the circulatory system that supplies nutrients and oxygen to the pulmonary...

    Correct

    • The bronchial circulation is a part of the circulatory system that supplies nutrients and oxygen to the pulmonary parenchyma. What percentage of cardiac output is received by bronchial circulation?

      Your Answer: 2%

      Explanation:

      The bronchial circulation is part of the systemic circulation and receives about 2% of the cardiac output from the left heart. Bronchial arteries arise from branches of the aorta, intercostal, subclavian or internal mammary arteries. The bronchial arteries supply the tracheobronchial tree with both nutrients and O2. It is complementary to the pulmonary circulation that brings deoxygenated blood to the lungs and carries oxygenated blood away from them in order to oxygenate the rest of the body.

    • This question is part of the following fields:

      • Physiology
      • Respiratory
      12.5
      Seconds
  • Question 18 - Intravenous diazepam was administered to a man who was brought to the emergency...

    Correct

    • Intravenous diazepam was administered to a man who was brought to the emergency department with status epilepticus. He was administered 15 l/min oxygen via a reservoir bag mask. Blood investigations showed sodium = 140 mmol/l, potassium = 4 mmol/l and chloride = 98 mmol/l. His arterial blood gas analysis revealed pH 7.08, p(CO2)= 61.5 mmHg, p(O2) = 111 mmHg and standard bicarbonate = 17 mmol/l. This patient had:

      Your Answer: Mixed acidosis

      Explanation:

      Acidosis with high p(CO2) and low standard bicarbonate indicates mixed acidosis. Lower p(O2) is due to breathing of 70% oxygen. The prolonged seizures lead to lactic acidosis and the intravenous diazepam is responsible for the respiratory acidosis. Treatment includes airway manoeuvres and oxygen, assisted ventilation if needed, and treatment with fluids.

    • This question is part of the following fields:

      • Physiology
      • Respiratory
      33.2
      Seconds
  • Question 19 - Which of the following variables are needed to calculate inspiratory reserve volume of...

    Correct

    • Which of the following variables are needed to calculate inspiratory reserve volume of a patient?

      Your Answer: Tidal volume, vital capacity and expiratory reserve volume

      Explanation:

      Vital capacity = inspiratory reserve volume + tidal volume + expiratory reserve volume. Thus, inspiratory reserve volume can be calculated if tidal volume, vital capacity and expiratory reserve volume are known.

    • This question is part of the following fields:

      • Physiology
      • Respiratory
      22.3
      Seconds
  • Question 20 - How much blood can the pulmonary vessels of a 45-year-old healthy man accommodate...

    Incorrect

    • How much blood can the pulmonary vessels of a 45-year-old healthy man accommodate when he is at rest?

      Your Answer: 75 ml

      Correct Answer: 500 ml

      Explanation:

      Pulmonary circulation is the portion of the cardiovascular system which carries deoxygenated blood away from the heart, to the lungs, and returns oxygenated blood back to the heart. The vessels of the pulmonary circulation are very compliant (easily distensible) and so typically accommodate about 500 ml of blood in an adult man. This large lung blood volume can serve as a reservoir for the left ventricle, particularly during periods when left ventricular output momentarily exceeds venous return.

    • This question is part of the following fields:

      • Physiology
      • Respiratory
      11.4
      Seconds

SESSION STATS - PERFORMANCE PER SPECIALTY

Pathology (3/6) 50%
Respiratory (14/20) 70%
Physiology (11/14) 79%
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