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首页> 外文期刊>International Journal of Biometeorology >Effects of immersion in water containing high concentrations of CO2 (CO2-water) at thermoneutral on thermoregulation and heart rate variability in humans
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Effects of immersion in water containing high concentrations of CO2 (CO2-water) at thermoneutral on thermoregulation and heart rate variability in humans

机译:中性温度下浸入高浓度CO 2 (CO 2 -水)水中对人体温度调节和心率变异性的影响

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摘要

Immersion in high concentrations of CO2 dissolved in freshwater (CO2-water) might induce peripheral vasodilatation in humans. In this study, we investigated whether such immersion could affect the autonomic nervous system in humans using spectral analysis of heart rate variability. Ten healthy men participated in this study. Tympanic temperature, cutaneous blood flow and electrocardiogram (ECG) were measured continuously during 20 min of immersion in CO2-water. The ECG was analyzed by spectral analysis of R–R intervals using the maximal entropy method. The decrease in tympanic temperature was significantly greater in CO2-water immersion than in freshwater immersion. Cutaneous blood flow at the immersed site was significantly increased with CO2-water immersion compared to freshwater. The high frequency component (HF: 0.15–0.40 Hz) was significantly higher in CO2-water immersion than in freshwater immersion, but the low frequency (LF: 0.04–0.15 Hz) /high frequency ratio (LF/HF ratio) was significantly lower in CO2-water immersion than in freshwater immersion. The present study contributes evidence supporting the hypothesis that CO2-water immersion activates parasympathetic nerve activity in humans. Keywords CO2-water immersion - Spectrum analysis - Thermoregulation
机译:高浓度溶解在淡水(CO 2 -水)中的CO 2 的浸泡可能会诱导人外周血管舒张。在这项研究中,我们使用心率变异性的频谱分析研究了这种浸入是否会影响人类的自主神经系统。十名健康男性参加了这项研究。浸泡在CO 2 -水中20分钟期间,连续测量鼓膜温度,皮肤血流量和心电图(ECG)。使用最大熵方法通过对R–R间隔进行频谱分析来分析ECG。鼓膜温度的下降在CO 2 水浸泡下比在淡水浸泡中要大得多。与淡水相比,CO 2 水浸泡后,浸泡部位的皮肤血流量显着增加。在CO 2 水中浸泡时,高频分量(HF:0.15–0.40 Hz)明显高于在淡水中浸泡,但低频分量(LF:0.04–0.15 Hz)/高频比(在CO 2 水中浸泡时的LF / HF比明显低于在淡水中浸泡。本研究提供了支持以下假设的证据:CO 2 -水浸没可激活人类副交感神经活动。 CO 2 -水浸-光谱分析-温度调节

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