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局部肌肉耗氧量与外部和关节比功率相关。

Local muscle oxygen consumption related to external and joint specific power.

机构信息

Centre for Elite Sports Research, Department of Neuroscience, Norwegian University of Science and Technology, Trondheim, Norway.

Centre for Elite Sports Research, Department of Neuroscience, Norwegian University of Science and Technology, Trondheim, Norway.

出版信息

Hum Mov Sci. 2016 Feb;45:161-71. doi: 10.1016/j.humov.2015.11.009. Epub 2015 Dec 1.

Abstract

The purpose of the present study was to examine the effects of external work rate on joint specific power and the relationship between knee extension power and vastus lateralis muscle oxygen consumption (mVO2). We measured kinematics and pedal forces and used inverse dynamics to calculate joint power for the hip, knee and ankle joints during an incremental cycling protocol performed by 21 recreational cyclists. Vastus lateralis mVO2 was estimated using near-infrared spectroscopy with an arterial occlusion. The main finding was a non-linear relationship between vastus lateralis mVO2 and external work rate that was characterised by an increase followed by a tendency for a levelling off (R(2)=0.99 and 0.94 for the quadratic and linear models respectively, p<0.05). When comparing 100W and 225W, there was a ∼43W increase in knee extension but still a ∼9% decrease in relative contribution of knee extension to external work rate resulting from a ∼47W increase in hip extension. When vastus lateralis mVO2 was related to knee extension power, the relationship was still non-linear (R(2)=0.99 and 0.97 for the quadratic and linear models respectively, p<0.05). These results demonstrate a non-linear response in mVO2 relative to a change in external work rate. Relating vastus lateralis mVO2 to knee extension power showed a better fit to a linear equation compared to external work rate, but it is not a straight line.

摘要

本研究旨在探讨外功对关节比功率的影响,以及膝关节伸肌力量与股外侧肌耗氧量(mVO2)之间的关系。我们测量了运动学和脚踏力,并使用逆动力学方法计算了 21 名休闲自行车运动员递增循环方案中髋关节、膝关节和踝关节的关节功率。股外侧肌 mVO2 采用近红外光谱法(动脉闭塞)进行估计。主要发现是股外侧肌 mVO2 与外功率之间呈非线性关系,表现为先增加后趋于平稳(二次和线性模型的 R2 值分别为 0.99 和 0.94,p<0.05)。当比较 100W 和 225W 时,膝关节伸肌力量增加了约 43W,但由于髋关节伸肌力量增加了约 47W,膝关节伸肌对外部工作率的相对贡献仍下降了约 9%。当股外侧肌 mVO2 与膝关节伸肌力量相关时,关系仍呈非线性(二次和线性模型的 R2 值分别为 0.99 和 0.97,p<0.05)。这些结果表明,mVO2 相对于外部工作率的变化呈非线性反应。将股外侧肌 mVO2 与膝关节伸肌力量相关联,与外功率相比,更符合线性方程,但并非直线关系。

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