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  • Question 1 - During strenuous exercise the PO2 of mixed venous blood is: ...

    Correct

    • During strenuous exercise the PO2 of mixed venous blood is:

      Your Answer: 25 mmHg

      Explanation:

      During strenuous exercise the PO2 of mixed venous blood is less than 30 mmHg.

    • This question is part of the following fields:

      • Medicine
      • Respiratory
      1.7
      Seconds
  • Question 2 - After exercise, O2 debt repay may take up to: ...

    Correct

    • After exercise, O2 debt repay may take up to:

      Your Answer: 90 min

      Explanation:

      Physical activity or exercise requires oxygen for production of ATP or energy via aerobic pathways of energy production. When the amount of oxygen that reaches muscles depletes, cells start producing energy anaerobically by partial breakdown of glucose resulting in lactic acid. Lactic acid should be removed from cells as it causes muscle fatigue. Oxygen is needed to oxidize lactic acid in to carbon dioxide and water and this need is known as oxygen debt. The existence of an oxygen debt explains why we continue to breathe deeply and quickly for a while after exercise. This may take up from 60 – 90 mins.

    • This question is part of the following fields:

      • Medicine
      • Respiratory
      2.5
      Seconds
  • Question 3 - An obstruction in a pulmonary artery causes impaired perfusion to an area in...

    Correct

    • An obstruction in a pulmonary artery causes impaired perfusion to an area in the lung. The gas values in the unperfused alveoli at sea level will be:

      Your Answer: PO2 = 149 C02 =0

      Explanation:

      Partial pressure of oxygen at sea level is approximately 160 mmHg. Partial pressure of oxygen in alveoli is around 150 mmHg and in an arteriole is around 80-100 mmHg. Partial pressure of carbon dioxide is around 35 mmHg in alveolar air and around 40 mmHg in the arteriole.

    • This question is part of the following fields:

      • Medicine
      • Respiratory
      2.7
      Seconds
  • Question 4 - The chemosensitive area in the medulla responds to: ...

    Correct

    • The chemosensitive area in the medulla responds to:

      Your Answer: High hydrogen and high carbon dioxide

      Explanation:

      The chemosensitive area in the medulla responds mainly to high pH levels and carbon dioxide levels. Baroreceptors in the carotid and aortic body respond mainly to oxygen and carbon dioxide partial pressure in blood.

    • This question is part of the following fields:

      • Medicine
      • Respiratory
      3
      Seconds
  • Question 5 - Carotid bodies... ...

    Correct

    • Carotid bodies...

      Your Answer: Are located near the bifurcation of the carotid arteries bilaterally

      Explanation:

      The carotid body is a small cluster of chemoreceptors and supporting cells located near the fork (bifurcation) of the carotid artery (which runs along both sides of the throat).The carotid body detects changes in the composition of arterial blood flowing through it, mainly the partial pressure of oxygen, but also of carbon dioxide. Furthermore, it is also sensitive to changes in pH and temperature. Carotid bodies trigger an action potential through the afferent fibers of the glossopharyngeal nerve,

    • This question is part of the following fields:

      • Medicine
      • Respiratory
      6
      Seconds
  • Question 6 - Medullary chemoreceptors ...

    Correct

    • Medullary chemoreceptors

      Your Answer: Monitor H+ concentration of the CSF

      Explanation:

      Central chemoreceptors of the central nervous system, located on the ventrolateral medullary surface in the vicinity of the exit of the 9th and 10th cranial nerves, are sensitive to the pH of their environment. These act to detect the changes in pH of nearby cerebral spinal fluid (CSF) that are indicative of altered oxygen or carbon dioxide concentrations available to brain tissues.

    • This question is part of the following fields:

      • Medicine
      • Respiratory
      2.2
      Seconds
  • Question 7 - Mean intra pleural pressure at rest with inspiration can reach: ...

    Correct

    • Mean intra pleural pressure at rest with inspiration can reach:

      Your Answer: -6 mmHg

      Explanation:

      It is a negative pressure as it is lower than the atmospheric pressure. It can start from -2.5 and reach around -6 mmHg

    • This question is part of the following fields:

      • Medicine
      • Respiratory
      2.6
      Seconds
  • Question 8 - What is the most appropriate management of a DVT during pregnancy? ...

    Correct

    • What is the most appropriate management of a DVT during pregnancy?

      Your Answer: Heparin

      Explanation:

      Low molecular weight heparin (LMWH) is safe in pregnancy and is therefore the first line management. Warfarin is teratogenic and must be avoided whilst the other options have no role to play.

    • This question is part of the following fields:

      • Medicine
      • Respiratory
      5.7
      Seconds
  • Question 9 - Oxygen enters blood from the alveoli by: ...

    Correct

    • Oxygen enters blood from the alveoli by:

      Your Answer: Passive diffusion

      Explanation:

      Oxygen enters blood from the alveoli by simple diffusion along a concentration gradient. Concentration of oxygen and the partial pressure of oxygen in the alveoli are higher than the partial pressure of oxygen in the blood. So, oxygen moves from alveoli into blood via simple diffusion according to the concentration gradient.

    • This question is part of the following fields:

      • Medicine
      • Respiratory
      2.9
      Seconds
  • Question 10 - During strenuous exercise the following arterial change can take place in a fit...

    Correct

    • During strenuous exercise the following arterial change can take place in a fit athlete:

      Your Answer: No change takes place

      Explanation:

      The changes which occur in arterial pH, PO2 and PCO2 values during exercise are usually small. Arterial PO2 often rises slightly because of hyperventilation although it may eventually fall at high work rates. During vigorous exercise, when sufficient oxygen for flux through the Krebs cycle is not available, the increased reliance on glycolysis results in increased accumulation of lactic acid, which initially leads to an increase in PaCO2 . However, this is counteracted by the stimulation of ventilation and as a result PaCO2 is decreased. This provides some respiratory compensation for further lactic acid production and prevents a decline in blood pH, which remains nearly constant during moderate exercise.

    • This question is part of the following fields:

      • Medicine
      • Respiratory
      6.8
      Seconds

SESSION STATS - PERFORMANCE PER SPECIALTY

Medicine (10/10) 100%
Respiratory (10/10) 100%
Passmed