Voluntary apnea (i.e. breath-holding) for 2 minutes would
a) Decrease PaO2
b) All of the above
c) Stimulate the central chemoreceptors
d) Increase PaCO2
e) Stimulate the peripheral chemoreceptors - Answers b) All of the above
All of the following conditions would be expected to stimulate the peripheral chemoreceptors except
a) Mild anemia
b) Hypoxia due to ascent to high altitude
c) Acute airway obstruction
d) Strenuous exercise - Answers a) Mild anemia
Stimulation of which of the following receptors should result in decreased ventilation?
a) Peripheral chemoreceptors
b) Central chemoreceptors
c) Pulmonary stretch receptors - Answers c) Pulmonary stretch receptors
The respiratory control center responsible for the generation of the respiratory pattern is the
a) Pons
b) Pre-Botzinger Complex
c) Dorsal Respiratory Group
d) Ventral Respiratory Group - Answers b) Pre-Botzinger Complex
These chemoreceptors do not respond to changes in PaO2.
a) Aortic chemoreceptors
b) Carotid chemoreceptors
c) Central chemoreceptors - Answers c) Central chemoreceptors
During acute alveolar hyperventilation, the blood
a) pH decreases
b) PCO2 increases
c) Bicarbonate (HCO3-) increases
d) Carbonic acid (H2CO3) decreases - Answers d) Carbonic acid (H2CO3) decreases
The buffering capacity of cerebral spinal fluid is lower than that of the plasma due to
a) A lower protein concentration
b) A lower H+ concentration
c) A higher concentration of bicarbonate ion - Answers a) A lower protein concentration
A decrease in the PO2 of inspired air will lead to
a) A decrease in the cerebral spinal fluid H+ concentration
b) An increase in PaCO2
c) Inhibition of the peripheral chemoreceptors
d) An increase in PAO2 - Answers a) A decrease in the cerebral spinal fluid H+ concentration
The increase in ventilation in response to low PaO2 is known as
a) The Hypoxic Ventilatory Response
b) Hypoxic Pulmonary Vasoconstriction
c) Alveolar dead space
d) A pulmonary shunt - Answers a) The Hypoxic Ventilatory Response
Shallow water blackout can occur
a) towards the end of a breath-hold dive that was preceded by hyperventilation
b) immediately on descent during a breath-hold dive following hyperventilation
c) any time during breath-holding - Answers a) towards the end of a breath-hold dive that was
preceded by hyperventilation
Which Gas Law influences the on-set of oxygen toxicity?
a) Henry's Law
b) Boyle's Law
c) Fick's Law - Answers a) Henry's Law
why is the PAO2 lower at the surface at the end of the dive compared to at the beginning? (choose all
correct answers)