Key result
Hypoxia increased the hypercapnic maximum percentage increase in middle cerebral artery velocity with CO2 (from 76.5% to 108%) and reduced the threshold (from 51.5 to 46.8 mmHg).
Why the study?
Does hypoxia alter the cerebrovascular and blood pressure responses to carbon dioxide in humans?
Does hypoxia alter the cerebrovascular and blood pressure responses to carbon dioxide in humans?
Below the threshold for CO2-induced increases in mean arterial pressure, middle cerebral artery velocity accurately reflects isolated cerebrovascular reactivity to CO2.
Hypoxia may enhance hypercapnic cerebrovascular reactivity below MAP threshold; leaves open validity of MCA velocity for CO2 assessment in clinical hypoxia.
Carbon dioxide (CO2) increases cerebral blood flow and arterial blood pressure. Cerebral blood flow increases not only due to the vasodilating effect of CO2 but also because of the increased perfusion pressure after autoregulation is exhausted. Our objective was to measure the responses of both middle cerebral artery velocity (MCAv) and mean arterial blood pressure (MAP) to CO2 in human subjects using Duffin-type isoxic rebreathing tests. Comparisons of isoxic hyperoxic with isoxic hypoxic tests enabled the effect of oxygen tension to be determined. During rebreathing the MCAv response to CO2 was sigmoidal below a discernible threshold CO2 tension, increasing from a hypocapnic minimum to a hypercapnic maximum. In most subjects this threshold corresponded with the CO2 tension at which MAP began to increase. Above this threshold both MCAv and MAP increased linearly with CO2 tension. The sigmoidal MCAv response was centred at a CO2 tension close to normal resting values (overall mean 36 mmHg). While hypoxia increased the hypercapnic maximum percentage increase in MCAv with CO2 (overall means from76.5 to 108%) it did not affect other sigmoid parameters. Hypoxia also did not alter the supra-threshold MCAv and MAP responses to CO2 (overall mean slopes 5.5% mmHg⁻¹ and 2.1 mmHg mmHg⁻¹, respectively), but did reduce the threshold (overall means from 51.5 to 46.8 mmHg). We concluded that in the MCAv response range below the threshold for the increase of MAP with CO2, the MCAv measurement reflects vascular reactivity to CO2 alone at a constant MAP.
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Battisti‐Charbonney et al. (2011) studied this question. Isoxic hypoxic rebreathing tests vs. Isoxic hyperoxic rebreathing tests was evaluated on Middle cerebral artery velocity (MCAv) and mean arterial blood pressure (MAP) responses to CO2. Hypoxia increased the hypercapnic maximum percentage increase in middle cerebral artery velocity with CO2 (from 76.5% to 108%) and reduced the threshold (from 51.5 to 46.8 mmHg).
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