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NIRS measurements with elite speed skaters: comparison between the ice rink and the laboratory.

机译:精英速滑运动员的NIRS测量:溜冰场与实验室之间的比较。

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摘要

Wearable, wireless near-infrared (NIR) spectrometers were used to compare changes in on-ice short-track skating race simulations over 1,500 m with a 3-min cycle ergometry test at constant power output (400 W). The subjects were six male elite short-track speed skaters. Both protocols elicited a rapid desaturation (∆TSI%) in the muscle during early stages (initial 20 s); however, asymmetry between right and left legs was seen in ΔTSI% for the skating protocol, but not for cycling. Individual differences between skaters were present in both protocols. Notably, one individual who showed a relatively small TSI% change (-10.7%, group mean = -26.1%) showed a similarly small change during the cycling protocol (-5.8%, group mean = -14.3%). We conclude that NIRS-detected leg asymmetry is due to the specific demands of short-track speed skating. However, heterogeneity between individuals is not specific to the mode of exercise. Whether this is a result of genuine differences in physiology or a reflection of differences in the optical properties of the leg remains to be determined.
机译:使用可穿戴的无线近红外(NIR)光谱仪,以恒定功率输出(400 W)进行3分钟循环测功测试,比较1,500 m以上冰上短道速滑比赛的模拟变化。受试者是六名男子精英短道速滑运动员。两种方案均会在早期阶段(初始20 s)引起肌肉快速去饱和(ΔTSI%)。但是,对于溜冰协议,左右腿之间的不对称度以ΔTSI%表示,但对于自行车而言则不然。两种协议中都存在溜冰者之间的个体差异。值得注意的是,一个个体的TSI%变化相对较小(-10.7%,组平均值= -26.1%)在骑车方案中也表现出相似的较小变化(-5.8%,组平均值= -14.3%)。我们得出的结论是,NIRS检测到的腿部不对称是由于短道速滑的特殊要求所致。但是,个体之间的异质性并不特定于运动方式。这是否是生理上真正的差异还是腿的光学特性差异的反映尚待确定。

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