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Intermittent hypoxia reduces cerebrovascular sensitivity to isocapnic hypoxia in humans.

机译:间歇性缺氧会降低人脑对低氧血症的脑血管敏感性。

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The purpose of this study was to determine the changes in human cerebrovascular function associated with intermittent poikilocapnic hypoxia (IH). Healthy men (n=8; 24+/-1 years) were exposed to IH for 10 days (12% O(2) for 5min followed by 5min of normoxia for 1h). During the hypoxic exposures, oxyhemoglobin saturation (SaO(2)) was 85% and the end-tidal partial pressure of CO(2) was permitted to fall as a result of hypoxic hyperventilation. Pre- and post-IH intervention subjects underwent a progressive isocapnic hypoxic test where ventilation, blood pressure, heart rate, and cerebral blood flow velocity (middle cerebral artery, transcranial Doppler) were measured to determine the ventilatory, cardiovascular and cerebrovascular sensitivities to isocapnic hypoxia. When compared to the pre-IH trial, cerebrovascular sensitivity to hypoxia significantly decreased (pre-IH=0.28+/-0.15; post-IH=0.16+/-0.14cms(-1)%SaO(2)(-1); P<0.05). No changes in ventilatory, blood pressure or heart rate sensitivity were observed (P>0.05). We have previously shown that the ability to oxygenate cerebral tissue measured using spatially resolved near infrared spectroscopy is significantly reduced following IH in healthy humans. Our collective findings indicate that intermittent hypoxia can blunt cerebrovascular regulation. Thus, it appears that intermittent hypoxia has direct cerebrovascular effects that can occur in the absence of changes to the ventilatory and neurovascular control systems.
机译:这项研究的目的是确定与间歇性脑血管缺氧(IH)相关的人脑血管功能的变化。健康的男性(n = 8; 24 +/- 1年)暴露于IH中10天(12%O(2)持续5min,然后正常氧5min持续1h)。在低氧暴露期间,氧合血红蛋白饱和度(SaO(2))为85%,由于低氧过度换气,CO(2)的潮气末分压被允许降低。在IH干预之前和之后,受试者进行了渐进式等碳酸血症的低氧试验,其中对通气,血压,心率和脑血流速度(大脑中动脉,经颅多普勒)进行了测量,以确定通气,心血管和脑血管对等碳酸血症的低氧敏感性。与IH之前的试验相比,脑血管对缺氧的敏感性显着降低(IH之前= 0.28 +/- 0.15; IH之后= 0.16 +/- 0.14cms(-1)%SaO(2)(-1); P <0.05)。呼吸,血压或心率敏感性均未见变化(P> 0.05)。先前我们已经表明,在健康人中进行IH后,使用空间分辨近红外光谱法测量的脑组织氧化能力显着降低。我们的集体调查结果表明,间歇性缺氧会钝化脑血管调节。因此,似乎间歇性缺氧具有直接的脑血管作用,而这种变化可在通气和神经血管控制系统没有变化的情况下发生。

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