首页> 外文期刊>The Open Sports Medicine Journal >Rapid Restitution of the Lung Functions Following Short-Term Breath-Holding During Moderate Intensity Cycling Exercise
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Rapid Restitution of the Lung Functions Following Short-Term Breath-Holding During Moderate Intensity Cycling Exercise

机译:在中等强度的循环运动中短期屏住呼吸后肺功能迅速恢复

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Short periods of breath-holding (BH) occur frequently during various kinds of sports activities. Increased minute oxygen uptake (VO2), increased minute carbon dioxide output (VCO2) and increased minute ventilation (VE) are some of the typical responses just after breaking the BH and resuming breathing and these parameters return to their steady levels over time. This study examined the properties of the restitution processes of lung functions after BH. Exercise tests were carried out with a bicycle ergometer for seven healthy male athletes and the ventilation activities and expired gases were measured with a breath-by-breath based aeromonitor. The respiratory responses to 25 s BH were tested during continuous cycling at three exercise loads (2 W, 22 W and 102 W). A single exponential decay function with two parameters: initial amplitude (A) and time constant (τ), was fitted to the data of VO2, VCO2, VE, expiratory tidal volume (TVE) and respiratory rate (RR) after cessation of the BH. It was found that, except for RR, A was increased and τ was decreased with increasing the exercise intensity. The A of VCO2 was smaller and τ was longer than those of VO2 at all load intensities. The difference in the time courses of VO2 and VCO2 may be explained by the different buffer mechanisms of oxygen and carbon dioxide within the body.
机译:在各种体育活动中,经常会出现短暂的屏气(BH)。刚打破BH并恢复呼吸后,增加的分钟氧气摄入量(VO2),增加的分钟二氧化碳输出量(VCO2)和增加的分钟通风量(VE)是一些典型的响应,这些参数会随着时间的推移恢复到稳定水平。这项研究检查了BH后肺功能恢复过程的特性。使用自行车测功机对七名健康的男性运动员进行了运动测试,并通过基于呼吸的空气监测仪测量了通气活动和排出的气体。在三个运动负荷(2 W,22 W和102 W)的连续循环过程中测试了对25 s BH的呼吸反应。停止BH后,VO2,VCO2,VE,呼气潮气量(TVE)和呼吸频率(RR)的数据拟合了具有两个参数的单个指数衰减函数:初始振幅(A)和时间常数(τ) 。结果发现,除了RR外,随着运动强度的增加,A增大,τ减小。在所有负载强度下,VCO2的A小于VO2的A,τ更长。 VO2和VCO2的时间过程的差异可以通过体内氧气和二氧化碳的不同缓冲机制来解释。

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