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Effects of Wearable Devices with Biofeedback on Biomechanical Performance of Running—A Systematic Review

机译:可穿戴装置对生物力学性能的可穿戴装置的影响 - 一种系统评价

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摘要

This present review includes a systematic search for peer-reviewed articles published between March 2009 and March 2020 that evaluated the effects of wearable devices with biofeedback on the biomechanics of running. The included articles did not focus on physiological and metabolic metrics. Articles with patients, animals, orthoses, exoskeletons and virtual reality were not included. Following the PRISMA guidelines, 417 articles were first identified, and nineteen were selected following the removal of duplicates and articles which did not meet the inclusion criteria. Most reviewed articles reported a significant reduction in positive peak acceleration, which was found to be related to tibial stress fractures in running. Some previous studies provided biofeedback aiming to increase stride frequencies. They produced some positive effects on running, as they reduced vertical load in knee and ankle joints and vertical displacement of the body and increased knee flexion. Some other parameters, including contact ground time and speed, were fed back by wearable devices for running. Such devices reduced running time and increased swing phase time. This article reviews challenges in this area and suggests future studies can evaluate the long-term effects in running biomechanics produced by wearable devices with biofeedback.
机译:本综述包括对2009年3月至3月2020年3月至3月2020年3月20日发表的同行评审的文章的系统搜索,该方法评估了可穿戴设备在跑步的生物力学上与生物机械的效果。包括的文章并未关注生理和代谢度量。本刊中包含患者,动物,旁观物,外骨骼和虚拟现实的相关文章。在PRISMA准则之后,首先确定417篇文章,除了除去不符合纳入标准的重复项和物品后,选择了1917篇。大多数综述文章报告阳性峰值加速度显着降低,发现与跑步中的胫骨应力骨折有关。一些先前的研究提供了生物反馈,旨在增加进步频率。它们对跑步产生了一些积极影响,因为它们减少了膝盖和踝关节的垂直载荷以及身体的垂直位移和增加的膝关节屈曲。一些其他参数,包括接触地面和速度,通过可穿戴设备送回用于运行。这种装置减少了运行时间和增加的摆动相时间。本文审查了该领域的挑战,并提出了未来的研究可以评估通过生物融产的可穿戴设备生产的生物力学中的长期效果。

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