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使用仿生鞋进行长时间跑步对下肢生物力学有影响。

Prolonged Running Using Bionic Footwear Influences Lower Limb Biomechanics.

作者信息

Jiang Xinyan, Yang Xiaoyi, Zhou Huiyu, Baker Julien S, Gu Yaodong

机构信息

Faculty of Sports Science, Ningbo University, Ningbo 315211, China.

Research Academy of Grand Health, Ningbo University, Ningbo 315211, China.

出版信息

Healthcare (Basel). 2021 Feb 23;9(2):236. doi: 10.3390/healthcare9020236.

Abstract

The running biomechanics of unstable shoes have been well investigated, however, little is known about how traditional neutral shoes in combination with unstable design elements and scientifically (bionic) designed shoes influence prolonged running biomechanics. The purpose of this study was to investigate biomechanical changes for a typical 5 km run and how footwear technology may affect outcomes. Sixteen healthy male recreational heel strike runners participated in this study, and completed two prolonged running sessions (neutral shoe session and bionic shoe session), with 7 to 10 days interval between sessions. A two-way repeated-measures analysis of variance (ANOVA, shoe × time) was conducted to determine any differences in joint biomechanics. Main effects for shoe type were observed at the ankle, knee and hip joints during the stance phase. In particular, decreased range of motion (ROM) was observed using the bionic shoes for all three joints, and the joint moments also had significant changes except for the frontal plane of the hip. Main effects for time were also observed at the ankle, knee and hip joints. The ROM of the sagittal plane in the knee and hip decreased post-5 km running. The reduction of ankle dorsiflexion, hip flexion, hip adduction and hip internal rotation angles were observed post-5 km running, as well as the increase of ankle eversion and external rotation, knee adduction and internal rotation angles. The kinetics also exhibited significant differences between pre-5 km running and post-5 km running. The interaction effects only existed in the ROM of the hip sagittal plane, hip adduction angle and hip internal rotation angle. The results suggested that bionic shoes could be beneficial for strengthening muscle control, enhancing postural stability and proprioceptive ability. Footwear personalization could be a solution that benefits runners, reduces injury risk and improves running performance.

摘要

不稳定型跑鞋的跑步生物力学已得到充分研究,然而,对于传统中性跑鞋与不稳定设计元素相结合以及科学(仿生)设计的跑鞋如何影响长时间跑步生物力学,人们却知之甚少。本研究的目的是调查典型5公里跑步过程中的生物力学变化以及鞋类技术如何影响跑步结果。16名健康的男性休闲足跟落地跑者参与了本研究,并完成了两次长时间跑步训练(中性跑鞋训练和仿生跑鞋训练),两次训练之间间隔7至10天。进行了双向重复测量方差分析(ANOVA,鞋类×时间)以确定关节生物力学的任何差异。在站立阶段,在踝关节、膝关节和髋关节观察到鞋类类型的主效应。特别是,使用仿生鞋时,所有三个关节的活动范围(ROM)均减小,除髋关节额状面外,关节力矩也有显著变化。在踝关节、膝关节和髋关节也观察到了时间的主效应。5公里跑步后,膝关节和髋关节矢状面的ROM减小。5公里跑步后,观察到踝关节背屈、髋关节屈曲、髋关节内收和髋关节内旋角度减小,以及踝关节外翻和外旋、膝关节内收和内旋角度增加。动力学在5公里跑步前和5公里跑步后也表现出显著差异。交互效应仅存在于髋关节矢状面的ROM、髋关节内收角度和髋关节内旋角度。结果表明,仿生鞋可能有利于增强肌肉控制、提高姿势稳定性和本体感受能力。鞋类个性化可能是一种有益于跑步者、降低受伤风险并提高跑步表现的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca1e/7926525/64b58751ff42/healthcare-09-00236-g001.jpg

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