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Cardiovascular System Response to Carbon Dioxide and Exercise in Oxygen-Enriched Environment at 3800 m

机译:3800 m富氧环境下心血管系统对二氧化碳和运动的反应

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摘要

Background: This study explores the responses of the cardiovascular system as humans exercise in an oxygen-enriched room at high altitude under various concentrations of CO2. Methods: The study utilized a hypobaric chamber set to the following specifications: 3800 m altitude with 25% O2 and different CO2 concentrations of 0.5% (C1), 3.0% (C2) and 5.0% (C3). Subjects exercised for 3 min three times, separated by 30 min resting periods in the above-mentioned conditions, at sea level (SL) and at 3800 m altitude (HA). The changes of heart rate variability, heart rate and blood pressure were analyzed. Results: Total power (TP) and high frequency power (HF) decreased notably during post-exercise at HA. HF increased prominently earlier the post-exercise period at 3800 m altitude with 25% O2 and 5.0% CO2 (C3), while low frequency power (LF) changed barely in all tests. The ratios of LF/HF were significantly higher during post-exercise in HA, and lower after high intensity exercise in C3. Heart rate and systolic blood pressure increased significantly in HA and C3. Conclusions: Parasympathetic activity dominated in cardiac autonomic modulation, and heart rate and blood pressure increased significantly after high intensity exercise in C3.
机译:背景:这项研究探讨了人类在高浓度不同氧气浓度的高氧房间中运动时心血管系统的反应。方法:本研究使用的减压室设置为以下规格:海拔3800 m,含25%的O2和不同的CO2浓度,分别为0.5%(C1),3.0%(C2)和5.0%(C3)。在上述条件下,受试者在海平面(SL)和3800 m高度(HA)锻炼3次,每次3分钟,休息30分钟。分析了心率变异性,心率和血压的变化。结果:HA进行运动后,总功率(TP)和高频功率(HF)显着下降。运动后,在海拔3800 m处,HF显着增加,O2浓度为25%,CO2浓度为5.0%(C3),而低频功率(LF)在所有测试中几乎没有变化。运动后,HA中的LF / HF比值明显较高,而在C3中进行高强度运动后,LF / HF值则较低。 HA和C3中的心率和收缩压显着增加。结论:副交感神经活动在心脏自主神经调节中占主导地位,在C3高强度运动后,心率和血压明显升高。

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