Muscle deoxygenation responses are similar between repeated sprints in hypoxia performed with uni- versus bi-lateral knee extensions but reduced compared to cycling

Loïs Mougin, Gregoire P. Millet, Christophe Vilmen, David Bendahan, Thomas Rupp
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Abstract

The aim of this study was to assess the effects of oxygen availability (normoxia vs. hypoxia), muscle mass and exercise type on pulse oxygen saturation, and quadriceps muscle oxygenation during repeated sprint exercises. Sixteen healthy participants completed 5 12 s sprints (21 s rest). This sprint-like exercise was performed under two environmental conditions (normoxia: FiO2 = 21%; systemic hypoxia: FiO2 = 13%) and for three exercise modalities: unilateral knee extensions (KE) involving the right leg extensors (UNI), bilateral KE involving both legs extensors (BIL), and bilateral leg cycling (CYC). Measurements included power output, pulse oxygen saturation (SpO2), and vastus lateralis oxygenation (delta in tissue saturation index; ΔTSI). In hypoxia, a similar minimal SpO2 was reported in UNI and BIL but SpO2 was lower in CYC (p = 0.047 and p = 0.021). ΔTSI during sprints and recoveries were similar in UNI and BIL but greater in CYC (p < 0.001) and in normoxia compared to hypoxia (main condition effect; p = 0.002). The power output was lower during KE exercises than during cycling, and no effect of hypoxia has been reported. The main results of this study indicate that unilateral and bilateral KE at high intensity induce comparable pulse and local muscular desaturation in hypoxia, and that these alterations are exacerbated during cycling.

Abstract Image

肌肉缺氧反应在单侧膝关节伸展和双侧膝关节伸展的缺氧条件下重复冲刺之间相似,但与循环相比有所减少
本研究的目的是评估在重复冲刺运动中,氧气可用性(常氧与缺氧)、肌肉质量和运动类型对脉搏氧饱和度和股四头肌氧合的影响。16名健康的参与者完成了5次12秒的冲刺(休息21秒)。这种类似短跑的运动在两种环境条件下进行(常氧:FiO2 = 21%;全身性缺氧:FiO2 = 13%)和三种运动方式:单侧膝关节伸展(KE)涉及右腿伸肌(UNI),双侧膝关节伸展(BIL)和双侧腿部循环(CYC)。测量包括功率输出、脉搏血氧饱和度(SpO2)和股外侧肌氧合(组织饱和指数δ;ΔTSI)。缺氧时,UNI和BIL的SpO2相似,但CYC的SpO2较低(p = 0.047和p = 0.021)。ΔTSI在冲刺和恢复期间UNI和BIL相似,但CYC更大(p <;0.001),与低氧相比(主要条件效应;p = 0.002)。KE运动时的功率输出比骑自行车时的功率输出低,并且没有缺氧影响的报道。本研究的主要结果表明,高强度的单侧和双侧KE在缺氧时诱导相似的脉搏和局部肌肉去饱和,并且这些改变在循环过程中加剧。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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