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抛物线飞行过程中的副交感神经心率调节

Parasympathetic heart rate modulation during parabolic flights.

作者信息

Beckers F, Seps B, Ramaekers D, Verheyden B, Aubert A E

机构信息

Laboratory of Experimental Cardiology, University Hospital Gasthuisberg O/N, Herestraat 49, 3000 Leuven, Belgium.

出版信息

Eur J Appl Physiol. 2003 Sep;90(1-2):83-91. doi: 10.1007/s00421-003-0854-y. Epub 2003 Jun 13.

Abstract

During parabolic flight short periods of microgravity and hypergravity are created. These changes influence cardiovascular function differently according to posture. During the 29th parabolic flight campaign of the European Space Agency (ESA), the electrocardiogram (ECG) was recorded continuously in seven healthy volunteers in two positions (standing and supine). Five different phases were differentiated: 1 g (1 g=9.81 m/s(2)) before and after each parabola, 1.8 g at the ascending leg of the parabola (hypergravity), 0 g at the apex, 1.6 g at the descending leg (hypergravity). We assessed heart rate variability (HRV) by indices of temporal analysis [mean RR interval (meanRR), the standard deviation of the intervals (SDRR), and the square root of the mean squared differences of successive intervals (rMSSD) and coefficient of variation (CV)]. In the supine position no significant differences were shown between different gravity phases for all HRV indices. In the standing position the 0 g phase showed a tendency towards higher values of meanRR compared to the control and to the other phases ( p=NS). SDRR, rMSSD and CV were significantly higher compared to control ( p<0.05). Significantly higher values for meanRR in the supine position at 1 g and hypergravity ( p<0.05) were found when compared to standing. SDRR was significantly higher at 0 g in the standing position compared to supine [95 (44) ms vs. 50 (15) ms; p<0.05] and lower in other phases. rMSSD and CV showed the same trend ( p=NS). We confirm that, during parabolic flights, position matters for cardiovascular measurements. Time domain indices of HRV during different gravity phases showed: (1) higher vagal modulation of the autonomic nervous system in microgravity, when compared with normo- or hypergravity in standing subjects; and (2) no differences in supine subjects between different g phases.

摘要

在抛物线飞行过程中会产生短时间的微重力和超重力。这些变化根据姿势对心血管功能的影响各不相同。在欧洲航天局(ESA)的第29次抛物线飞行任务中,对7名健康志愿者在两个姿势(站立和仰卧)下连续记录心电图(ECG)。区分了五个不同阶段:每个抛物线前后的1g(1g = 9.81m/s²),抛物线上升段的1.8g(超重力),顶点处的0g,下降段的1.6g(超重力)。我们通过时域分析指标[平均RR间期(meanRR)、间期标准差(SDRR)、连续间期均方差的平方根(rMSSD)和变异系数(CV)]评估心率变异性(HRV)。在仰卧位时,所有HRV指标在不同重力阶段之间均未显示出显著差异。在站立位时,与对照组和其他阶段相比,0g阶段的meanRR值有升高趋势(p =无显著性差异)。SDRR、rMSSD和CV与对照组相比显著更高(p < 0.05)。与站立位相比,仰卧位在1g和超重力时的meanRR值显著更高(p < 0.05)。站立位在0g时的SDRR显著高于仰卧位[95(44)ms对50(15)ms;p < 0.05],在其他阶段则较低。rMSSD和CV呈现相同趋势(p =无显著性差异)。我们证实,在抛物线飞行期间,姿势对心血管测量很重要。不同重力阶段的HRV时域指标显示:(1)与站立受试者的正常重力或超重力相比,微重力下自主神经系统的迷走神经调制更高;(2)仰卧受试者在不同g阶段之间没有差异。

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