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在不同体型的人群中,站立位时足内在肌产生最大趾屈力量的力学驱动因素。

Mechanical drivers of intrinsic foot muscle for maximum toe flexor strength in upright standing across different body size.

作者信息

Koyama Keiji, Yamauchi Junichiro

机构信息

Toin University of Yokohama, Kanagawa, Japan.

Tokyo Metropolitan University, Tokyo, Japan.

出版信息

Foot (Edinb). 2024 Dec;61:102128. doi: 10.1016/j.foot.2024.102128. Epub 2024 Sep 13.

DOI:10.1016/j.foot.2024.102128
PMID:39276714
Abstract

This study aimed to evaluate maximum toe flexor strength, foot arch height, intrinsic toe flexor muscle size and foot arch stiffness among individuals with different body sizes, and to compare these variables between sitting and standing positions. Maximum toe flexor strength in sitting and standing, and intrinsic foot muscle thicknesses (flexor hallucis brevis: FHB, flexor digitorum brevis: FDB, abductor hallucis: AH and quadratus plantae: QP), were measured using a toe grip dynamometer and a B-mode ultrasound in healthy young men. FHB was thicker than AH, FDB and QP, AH was thicker than FDB and QP, and no significant difference was found between FDB and QP. Toe flexor strength was correlated with FHB and AH, and foot arch height was correlated with FHB. Toe flexor strength was greater in standing than in sitting. Stepwise multiple regression analysis identified FHB and AH as determinants of toe flexor strength in standing, and the relative muscle strength values per body weight in standing were determined by QP, foot arch index and foot arch stiffness. Overweight individuals had a decreased rate of increase in relative toe flexor strength compared to normal individuals. These results suggest that a large muscle thickness of intrinsic foot muscle a key contributor to toe flexor strength. Moreover, toe flexor muscle in upright standing could have the potential to generate force independently of intrinsic foot muscle size, but obese individuals who chronically put weight on their feet might impair the force amplification mechanism in upright standing.

摘要

本研究旨在评估不同体型个体的最大足趾屈肌力量、足弓高度、足内在屈肌大小和足弓刚度,并比较这些变量在坐姿和站姿之间的差异。在健康年轻男性中,使用握力计和B型超声测量坐姿和站姿下的最大足趾屈肌力量以及足部内在肌厚度(拇短屈肌:FHB、趾短屈肌:FDB、拇展肌:AH和跖方肌:QP)。FHB比AH、FDB和QP厚,AH比FDB和QP厚,FDB和QP之间未发现显著差异。足趾屈肌力量与FHB和AH相关,足弓高度与FHB相关。站立时的足趾屈肌力量大于坐姿时。逐步多元回归分析确定FHB和AH是站立时足趾屈肌力量的决定因素,站立时每体重的相对肌肉力量值由QP、足弓指数和足弓刚度决定。与正常个体相比,超重个体的相对足趾屈肌力量增加率降低。这些结果表明,足部内在肌的较大肌肉厚度是足趾屈肌力量的关键贡献因素。此外,站立时的足趾屈肌可能有独立于足部内在肌大小产生力量的潜力,但长期负重的肥胖个体可能会损害站立时的力量放大机制。

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Foot (Edinb). 2024 Dec;61:102128. doi: 10.1016/j.foot.2024.102128. Epub 2024 Sep 13.
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