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世界级自行车运动员下肢肌肉力量能力:对冲刺自行车运动表现极限的新认识。

Strength capacity of lower-limb muscles in world-class cyclists: new insights into the limits of sprint cycling performance.

机构信息

Laboratory "Movement, Interactions, Performance" (Ea 4334), University of Nantes, Nantes, France.

French Cycling Federation, Saint-Quentin-en-Yvelines, France.

出版信息

Sports Biomech. 2023 Apr;22(4):536-553. doi: 10.1080/14763141.2021.2024243. Epub 2022 Jan 14.

Abstract

This study aimed to determine the relationship between the torque-generating capacity in sprint cycling and the strength capacity of the six lower-limb muscle groups in male and female world-class sprint cyclists. Eleven female and fifteen male top-elite cyclists performed 5-s sprints at maximal power in seated and standing positions. They also performed a set of maximal voluntary ankle, knee and hip flexions and extensions to assess single-joint isometric and isokinetic torques. Isokinetic torques presented stronger correlations with cycling torque than isometric torques for both body positions, regardless of the group. In the female group, knee extension and hip flexion torques accounted for 81.2% of the variance in cycling torque, while the ability to predict cycling torque was less evident in males (i.e., 59% of variance explained by the plantarflexion torque only). The standing condition showed higher correlations than seated and a better predictive model in males (R = 0.88). In addition to the knee extensors and flexors and hip extensors, main power producers, the strength capacity of lower-limb distal plantarflexor (and to a lesser extent dorsiflexor) muscles, as well as other non-measured qualities (e.g., the upper body), might be determinants to produce such extremely high cycling torque in males.

摘要

本研究旨在确定短跑自行车运动中的扭矩产生能力与世界级短跑自行车男性和女性运动员的六个下肢肌肉群的力量能力之间的关系。11 名女性和 15 名顶级男性精英自行车运动员在坐姿和站姿下以最大功率进行了 5 秒冲刺。他们还进行了一组最大自主踝关节、膝关节和髋关节屈伸运动,以评估单关节等长和等速扭矩。对于两种体位,无论组别如何,等速扭矩与自行车扭矩的相关性均强于等长扭矩。在女性组中,膝关节伸展和髋关节屈曲扭矩分别占自行车扭矩方差的 81.2%,而男性的自行车扭矩预测能力则不太明显(即,仅足底屈肌扭矩可解释 59%的方差)。与坐姿相比,站立位的相关性更高,且对男性的预测模型更好(R=0.88)。除了膝关节伸肌和屈肌以及髋关节伸肌等主要动力产生者外,下肢远端跖屈肌(以及在较小程度上背屈肌)的力量能力以及其他未测量的素质(例如,上半身)可能是男性产生如此高自行车扭矩的决定因素。

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