首页> 外文期刊>Journal of applied physiology >Exercise cardiorespiratory and thermoregulatory responses in normoxic, hypoxic, and hot environment following 10-day continuous hypoxic exposure
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Exercise cardiorespiratory and thermoregulatory responses in normoxic, hypoxic, and hot environment following 10-day continuous hypoxic exposure

机译:在10天的连续缺氧暴露后,常氧,缺氧和热环境中运动心肺和热调节反应

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We examined the effects of acclimatization to normodotic hypoxia on aerobic performance and exercise thermoregulatory responses under normoxic, hypoxic, and hot conditions. Twelve men performed tests of maximal oxygen uptake ((V)over dotO-2max) in normoxic (NOR), hypoxic [HYP; 13.5% fraction of inspired oxygen (FIO2)], and hot (HE; 35 degrees C, 50% relative humidity) conditions in a randomized manner before and after a 10-day continuous normodotic hypoxic exposure [FIO2 = 13.65 (0.35)%, inspired partial pressure of oxygen = 87 (3) mmHg]. The acclimatization protocol included daily exercise [60 min at 50% hypoxia-specific peak power output (Wpeak)]. All maximal tests were preceded by a steadystate exercise (30 min at 40% Wpeak) to assess the sweating response. Hematological data were assessed from venous blood samples obtained before and after acclimatization. (V)over dotO-2max increased by 10.7% (P = 0.002) and 7.9% (P = 0.03) from pre-acclimatization to post acclimatization in NOR and HE, respectively, whereas no differences were found in HYP [pre: 39.9 (3.8) vs. post: 39.4 (5.1) ml.kg(-1).min(-1), P = 1.0]. However, the increase in V. O2max did not translate into increased Wpeak in either NOR or HE. Maximal heart rate and ventilation remained unchanged following acclimatization. = o differences were noted in the sweating gain and thresholds independent of the acclimatization or environmental conditions. Hypoxic acclimatization markedly increased hemoglobin (P 0.001), hematocrit (P = 0.001), and extracellular HSP72 (P = 0.01). These data suggest that 10 days of normodotic hypoxic acclimatization combined with moderate-intensity exercise training improves (V)over dotO-2max in NOR and HE, but does not seem to affect exercise performance or thermoregulatory responses in any of the tested environmental conditions.
机译:我们在常氧,缺氧和热条件下,检查了适应常规缺氧对常压缺氧的影响。十二名男性在常氧(NOR),缺氧[百分之腺;在10天连续常规缺氧暴露之前和之后,在10天连续常曲面缺氧暴露之前和之后,热(He; 35摄氏度,50%相对湿度)条件下的13.5%的氧气(FiO2)],并以随机方式进行热(He; 35摄氏度,相对湿度)条件[FiO2 = 13.65(0.35)%,灵感的氧气部分压力= 87(3)mmHg]。适应方案包括每日运动[60分钟,50%缺氧特异性峰值功率输出(WPEAK)]。所有最大试验均在肌肉锻炼前(30分钟为40%WPEAK),以评估出汗响应。从均匀化之前和之后获得的静脉血液样品评估血液学数据。 &(v)ov; o-2max分别从预邻移到均匀化的预邻移,o-2max增加了10.7%(p = 0.002)和7.9%(p = 0.03),分别在均匀地和他的均匀化,而在百下没有发现差异pre:39.9(3.8)与柱:39.4(5.1)ml.kg(-1).min(-1),p = 1.0]。然而,V. O2max的增加并没有翻译成含量或他的Wpeak。在适应后,最大心率和通风保持不变。 = O在出汗增益中注意到差异,与适应环境条件无关的阈值。缺氧适应性明显增加血红蛋白(P <0.001),血细胞比容(P = 0.001)和细胞外HSP72(P = 0.01)。这些数据表明,10天的诺曲调缺氧适应性结合中等强度运动训练改善了&(v)& o-2max,也没有影响任何测试环境条件。

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