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大脚趾屈肌力量的增加并不会改变跖趾关节和踝关节的力学或跑步经济性。

Increased toe-flexor muscle strength does not alter metatarsophalangeal and ankle joint mechanics or running economy.

机构信息

Bowerman Sports Science Clinic, Department of Human Physiology, 1240 University of Oregon , Eugene , OR , USA.

出版信息

J Sports Sci. 2019 Dec;37(23):2702-2710. doi: 10.1080/02640414.2019.1661562. Epub 2019 Sep 5.

Abstract

The intrinsic foot musculature (IFM) supports the arches of the foot and controls metatarsophalangeal joint (MTPJ) motion. Stronger IFM can increase the effective foot length, potentially altering lower-extremity gearing similar to that of using carbon-fibre-plated footwear. The purpose of this study was to investigate if strengthening of the IFM can alter gait mechanics and improve running economy. Eleven participants were randomly assigned into an experimental group and nine into a control group. The experimental group performed IFM strengthening exercises for ten weeks. Toe-flexor strength, gait mechanics, and running economy were assessed at baseline, five weeks, and ten weeks; using a custom strength testing apparatus, motion capture and force-instrumented treadmill, and indirect calorimetry. Toe-flexor strength increased in the experimental group ( = .006); however, MTPJ and ankle mechanics and running economy did not change. The dearth of changes in mechanics may be due to a lack of mechanical advantage of the IFM, runners staying within their preferred movement path, a need for MTPJ dorsiflexion to facilitate the windlass mechanism, or the primary function of the IFM being to support the longitudinal arch of the foot as opposed to modulating MTPJ mechanics.

摘要

足底内在肌(IFM)支撑足弓并控制跖趾关节(MTPJ)运动。更强的 IFM 可以增加有效足长,可能会改变下肢的传动比,类似于使用碳纤维板鞋。本研究的目的是探讨 IFM 的强化是否可以改变步态力学并提高跑步经济性。11 名参与者被随机分配到实验组和 9 名对照组。实验组进行了为期 10 周的 IFM 强化练习。使用定制的力量测试设备、运动捕捉和测力跑步机以及间接测热法,在基线、5 周和 10 周评估了跖屈肌力量、步态力学和跑步经济性。实验组的跖屈肌力量增加( = 0.006);然而,MTPJ 和踝关节力学以及跑步经济性没有改变。力学变化不大可能是由于 IFM 的机械优势不足,跑步者保持在他们喜欢的运动路径内,MTPJ 背屈以促进辘轳机制的需要,或者 IFM 的主要功能是支撑足弓的纵向弓,而不是调节 MTPJ 力学。

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