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“交叉适应”:习惯于短时间重复冷水浸泡会影响人体对急性缺氧的反应。

'Cross-adaptation': habituation to short repeated cold-water immersions affects the response to acute hypoxia in humans.

机构信息

Department of Sport and Exercise Science, University of Portsmouth, Cambridge Road, Portsmouth PO1 2ER, UK.

出版信息

J Physiol. 2010 Sep 15;588(Pt 18):3605-13. doi: 10.1113/jphysiol.2010.193458. Epub 2010 Jul 19.

Abstract

Adaptation to an environmental stressor is usually studied in isolation, yet these stressors are often encountered in combination in the field, an example being cold and hypoxia at altitude. There has been a paucity of research in this area, although work with rodents indicates that habituation to repeated short cold exposures has a cross-adaptive effect during hypoxia. The present study tested the hypothesis that cross-adaptation is also possible with humans. Thirty-two male volunteers were exposed to 10 min bouts of normoxic and hypoxic (FIO2 0.12) rest and exercise (100 W on a recumbent cycle ergometer). These were repeated after a 96 h interval, during which participants completed six, 5 min immersions in either cold (12°C, CW) or thermoneutral water (35°C, TW). Venous blood samples were taken immediately after each bout, for determination of catecholamine concentrations. A three-lead ECG was recorded throughout and the final 5 min of each bout was analysed for heart rate variability using fast fourier transformations (and displayed as log transformed data (ln)). In comparison with the first hypoxic exercise exposure, the second exposure of the CW group resulted in an increased ln high frequency (ln HF) power (P < 0.001) and reduced adrenaline (P < 0.001) and noradrenaline concentrations (P < 0.001). Adrenaline and noradrenaline concentrations were lower in the CW group during the second hypoxic exercise compared to the TW group (P = 0.042 and P = 0.003), but ln HF was not. When separated into hypoxic sensitive and hypoxic insensitive subgroups, ln HF was higher in the hypoxic sensitive CW group during the second hypoxic exercise than in any of the other subgroups. Cold habituation reduced the sympathetic response (indicated by the reduced catecholamine concentrations) and elevated the parasympathetic activity (increased ln HF power) to hypoxic exercise. These data suggest a generic autonomic cross-adaptive effect between cold habituation and exposure to acute hypoxia in humans.

摘要

适应环境应激通常是孤立地研究的,但这些应激源在野外通常是同时出现的,例如寒冷和高海拔缺氧。尽管啮齿动物的研究表明,反复短暂的寒冷暴露适应在缺氧时有交叉适应作用,但在这一领域的研究还很少。本研究检验了以下假设:人类也可能具有交叉适应。32 名男性志愿者接受了 10 分钟的常氧和缺氧(FIO2 0.12)休息和运动(卧蹬自行车上 100 瓦)。在 96 小时的间隔后重复这些,在此期间,参与者完成了六次 5 分钟的冷水(12°C,CW)或常温(35°C,TW)浸泡。每次回合后立即抽取静脉血样,测定儿茶酚胺浓度。整个过程中记录三导联心电图,分析每个回合的最后 5 分钟的心率变异性,使用快速傅里叶变换(并显示为对数转换数据(ln))。与第一次缺氧运动暴露相比,CW 组的第二次暴露导致 ln 高频(ln HF)功率增加(P < 0.001),肾上腺素(P < 0.001)和去甲肾上腺素浓度降低(P < 0.001)。与 TW 组相比,CW 组在第二次缺氧运动中肾上腺素和去甲肾上腺素浓度较低(P = 0.042 和 P = 0.003),但 ln HF 则不然。当分为缺氧敏感和缺氧不敏感亚组时,在第二次缺氧运动中,缺氧敏感 CW 组的 ln HF 高于其他任何亚组。冷适应降低了交感神经反应(表现为儿茶酚胺浓度降低),并增加了迷走神经活动(ln HF 功率增加)对缺氧运动的反应。这些数据表明,在人类中,冷适应和急性缺氧暴露之间存在一种普遍的自主交叉适应效应。

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