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Short intermittent hypoxic exposures augment ventilation but do not alter regional cerebral and muscle oxygenation during hypoxic exercise

机译:短暂的间歇性低氧暴露可增加通气量,但在低氧运动期间不会改变局部的大脑和肌肉氧合

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This study investigated the effects of four exposures to normobaric hypoxia (SIH group; FIO2=0.120, N= 10) or placebo-control normoxia (Control group; FI O2=0.209, N= 9) on cardio-respiratory responses to hypoxic exercise. Before and after the exposures all subjects performed a constant power test (CP) to exhaustion in hypoxia (FI O2=0.120) at a work load corresponding to 75% of previously determined normoxic V O2 peak. Arterial oxygen saturation (Sp O2) and minute ventilation (V E) were measured continuously. NIRS was used to monitor regional changes in oxygenated, de-oxygenated and total hemoglobin concentrations of the frontal cortex, vastus lateralis and serratus anterior. Although neither group improved CP time, the SIH group exhibited increases in both V E (+15%; P 0.05) and Sp O2 (+4%; P 0.05) after intermittent hypoxia. No physiologically significant differences were observed during exercise in vastus lateralis, serratus anterior and cerebral oxygenation between groups and testing periods. These data suggest that normobaric SIH enhances hypoxic exercise V E and Sp O2, without affecting regional oxygenation or time to exhaustion.
机译:这项研究调查了四次暴露于常压低氧(SIH组; FIO2 = 0.120,N = 10)或安慰剂对照常氧(对照组; FI O2 = 0.209,N = 9)对低氧运动心脏呼吸反应的影响。在暴露之前和之后,所有受试者在相当于先前确定的常氧V O2峰值的75%的工作负荷下,进行缺氧(FI O2 = 0.120)时的力竭恒定功率测试(CP)。连续测量动脉血氧饱和度(Sp O2)和分钟通气量(V E)。 NIRS被用来监测额叶皮层,外侧阔肌和前锯肌的含氧,脱氧和总血红蛋白浓度的区域变化。尽管两组均未改善CP时间,但在间歇性缺氧后,SIH组的V E(+ 15%; P <0.05)和Sp O2(+ 4%; P <0.05)均增加。在运动期间,各组和测试期间在外侧股外侧肌,锯缘前肌和脑氧合中未观察到生理学上的显着差异。这些数据表明,常压SIH可增强低氧运动V E和Sp O2,而不会影响区域氧合作用或疲惫时间。

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