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定制高领鞋对肌肉活动、动态稳定性和腿部刚度的影响:一项仿生方法研究。

The Effects of a Custom-Designed High-Collar Shoe on Muscular Activity, Dynamic Stability, and Leg Stiffness: A Biomimetic Approach Study.

作者信息

Nasirzadeh Alireza, Yang Jaeha, Yang Seungtae, Yun Juseok, Bae Young Yoon, Park Juyeon, Ahn Jooeun, Lee Giuk

机构信息

Department of Mechanical Engineering, Chung-Ang University, Seoul 06974, Republic of Korea.

HUROTICS Inc., Seoul 06974, Republic of Korea.

出版信息

Biomimetics (Basel). 2023 Jun 27;8(3):274. doi: 10.3390/biomimetics8030274.

Abstract

High-collar shoes are a biomimetic approach to preventing lateral ankle injuries during high-demand activities; however, the influence of collar stiffness (CS) on parameters related to lateral ankle sprain prevention during running remains unclear. In this study, we investigated the effects of a custom-designed shoe CS on muscular activity, dynamic stability, and leg stiffness (K) during running using a biomimetic design approach inspired by the mechanisms of ankle sprain prevention. Sixteen healthy male participants ran on a treadmill while wearing a custom-designed high-collar shoe with low, medium, and high CS conditions, measured using circumferential ankle pressure (CAP). Lower extremity kinematics and electromyography (EMG) data were recorded simultaneously. One-way repeated-measures ANOVA was conducted to compare the CS conditions. Results indicate that high and medium CS conditions significantly reduce sagittal and frontal ankle ranges of motion (ROMs) compared to the low CS condition, providing improved stability and support against lateral ankle sprain; moreover, there was a trend towards higher dynamic stability and K with increasing CS. Our study highlights the importance of considering the CAP in regulating high-collar stiffness properties and how higher CS may provide better support for the ankle during running. Nevertheless, additional research is necessary to validate the efficacy of the current design in preventing ankle sprains during high-demand activities.

摘要

高领鞋是一种在高需求活动中预防踝关节外侧损伤的仿生方法;然而,鞋领刚度(CS)对跑步过程中与预防踝关节外侧扭伤相关参数的影响仍不明确。在本研究中,我们采用受踝关节扭伤预防机制启发的仿生设计方法,研究了定制设计的鞋CS对跑步过程中肌肉活动、动态稳定性和腿部刚度(K)的影响。16名健康男性参与者在跑步机上跑步,同时穿着定制设计的高领鞋,其CS条件分为低、中、高,通过圆周踝关节压力(CAP)进行测量。同时记录下肢运动学和肌电图(EMG)数据。进行单向重复测量方差分析以比较CS条件。结果表明,与低CS条件相比,高CS和中CS条件显著减小了矢状面和额状面踝关节活动范围(ROM),提供了更好的稳定性并有助于预防踝关节外侧扭伤;此外,随着CS增加,动态稳定性和K有升高趋势。我们的研究强调了在调节高领鞋刚度特性时考虑CAP的重要性,以及更高的CS如何在跑步过程中为踝关节提供更好的支撑。尽管如此,仍需要进一步研究来验证当前设计在高需求活动中预防踝关节扭伤的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f249/10377164/df1ce0f44dd9/biomimetics-08-00274-g001.jpg

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