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不同功率输出和踏频下骑行过程中的骨骼肌氧合情况。

Skeletal muscle oxygenation during cycling at different power output and cadence.

作者信息

Shastri Lisha, Alkhalil Mariana, Forbes Claire, El-Wadi Tina, Rafferty Gerrard, Ishida Koji, Formenti Federico

机构信息

Centre for Human and Applied Physiological Sciences, Faculty of Life Sciences and Medicine, King's College London, London, United Kingdom.

Research Centre of Health, Physical Fitness and Sport, Nagoya University, Nagoya, Japan.

出版信息

Physiol Rep. 2019 Feb;7(3):e13963. doi: 10.14814/phy2.13963.

Abstract

The selection of cadence during cycling may be determined by a number of factors, including the degree of oxygenation in the exercising skeletal muscle. The purpose of this study was to determine the degree of muscle oxygenation associated with different cycling cadences and exercise intensities, and its putative role in the choice of self-selected cadence during cycling. We recorded cardiopulmonary and metabolic responses to cycling at exercise intensities of 70% and 90% of the ventilatory threshold (T ), and used near-infrared spectroscopy to determine tissue saturation index as a measure of skeletal muscle (vastus lateralis) oxygenation. Twelve participants cycled at cadences of 30, 50, 70, 90, and 110 revolutions per minute (rpm), each for 4 min, in a randomized sequence, interspersed with active recovery periods. Despite cardiopulmonary and metabolic responses being greater at 90% than at 70% T , and at 110 rpm compared with lower cadences, vastus lateralis oxygenation was not different between the two exercise intensities and five cadences tested. Our results indicate that skeletal muscle tissue saturation index is not substantially affected during cycling for short periods of time at constant, moderate exercise intensity at cadences between 30 and 110 rpm, suggesting that skeletal muscle oxygenation may not be an important negative feedback signal in the choice of self-selected cadence during cycling at moderate exercise intensity.

摘要

骑行时踏频的选择可能由多种因素决定,包括运动骨骼肌的氧合程度。本研究的目的是确定与不同骑行踏频和运动强度相关的肌肉氧合程度,以及其在骑行过程中自选踏频选择中的假定作用。我们记录了在通气阈值(T)的70%和90%运动强度下骑行时的心肺和代谢反应,并使用近红外光谱法测定组织饱和度指数,作为骨骼肌(股外侧肌)氧合的指标。12名参与者以每分钟30、50、70、90和110转(rpm)的踏频骑行,每个踏频持续4分钟,采用随机顺序,中间穿插主动恢复期。尽管在90%T时的心肺和代谢反应大于70%T时,且在110rpm时大于较低踏频时,但在测试的两种运动强度和五个踏频下,股外侧肌的氧合情况并无差异。我们的结果表明,在30至110rpm的踏频下,以恒定的中等运动强度进行短时间骑行时,骨骼肌组织饱和度指数并未受到实质性影响,这表明在中等运动强度骑行过程中,骨骼肌氧合可能不是自选踏频选择中重要的负反馈信号。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eca1/6367161/05616fac46e6/PHY2-7-e13963-g001.jpg

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