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鞋中足弯曲刚度对足跟到足尖跑步过程中多节段足部运动学和地面反作用力的影响。

Effects of Shoe Midfoot Bending Stiffness on Multi-Segment Foot Kinematics and Ground Reaction Force during Heel-Toe Running.

作者信息

Ma Ruiya, Lam Wing-Kai, Ding Rui, Yang Fan, Qu Feng

机构信息

Biomechanics Laboratory, School of Sport Science, Beijing Sport University, Beijing 100084, China.

Sports Information and External Affairs Center, Hong Kong Sports Institute, Hong Kong 999077, China.

出版信息

Bioengineering (Basel). 2022 Oct 2;9(10):520. doi: 10.3390/bioengineering9100520.

Abstract

We investigated how midfoot stiffness of running shoes influences foot segment kinematics and ground reaction force (GRF) during heel-toe running. Nineteen male rearfoot strike runners performed overground heel-toe running at 3.3 m/s when wearing shoes with different midfoot bending stiffnesses (low, medium, and high) in a randomized order. A synchronized motion capture system (200 Hz) and force plate (1000 Hz) were used to collect the foot-marker trajectories and GRF data. Foot kinematics, including rearfoot-lab, midfoot-rearfoot, forefoot-rearfoot, and forefoot-midfoot interactions, and kinetics, including GRF characteristics, were analyzed. Our results indicated that high midfoot stiffness shoes reduced the forefoot-rearfoot range of motion (mean ± SD; high stiffness, 7.8 ± 2.0°, low stiffness, 8.7 ± 2.1°; p < 0.05) and forefoot-midfoot range of motion (mean ± SD; high stiffness, 4.2 ± 1.1°, medium stiffness, 4.6 ± 0.9°; p < 0.05) in the frontal plane. No differences were found in the GRF characteristics among the shoe conditions. These findings suggest that an increase in midsole stiffness only in the midfoot region can reduce intersegmental foot medial-lateral movements during the stance phase of running. This may further decrease the tension of the foot muscles and tendons during prolonged exercises.

摘要

我们研究了跑鞋中足刚度如何影响足跟到足尖跑步过程中的足部节段运动学和地面反作用力(GRF)。19名男性后足着地跑步者以随机顺序穿着具有不同中足弯曲刚度(低、中、高)的鞋子,以3.3米/秒的速度在地面上进行足跟到足尖跑步。使用同步运动捕捉系统(200赫兹)和测力台(1000赫兹)收集足部标记轨迹和GRF数据。分析了足部运动学,包括后足-足跟、中足-后足、前足-后足和前足-中足的相互作用,以及动力学,包括GRF特征。我们的结果表明,高刚度中足跑鞋在额状面内减小了前足-后足的运动范围(平均值±标准差;高刚度,7.8±2.0°,低刚度,8.7±2.1°;p<0.05)和前足-中足的运动范围(平均值±标准差;高刚度,4.2±1.1°,中刚度,4.6±0.9°;p<0.05)。在不同鞋子条件下,GRF特征没有差异。这些发现表明,仅中足区域中底刚度的增加可以减少跑步支撑阶段足部节段间的内外侧运动。这可能会进一步降低长时间运动期间足部肌肉和肌腱的张力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/728f/9598119/152ae7a7cd1d/bioengineering-09-00520-g001.jpg

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