Development of a Knee Extensors Training System with Active Resistance Component

Z. Gu, Ko Matsuhiro, Jiei Yanagi, Kazuhiko Mizukami, Ryuya Watanabe, Hiroaki Eto, S. Cosentino, A. Takanishi
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Abstract

Knee extensors play a key role in maintaining balance and stabilizing gait. Insufficient training of knee extensors leads to muscle atrophy and progressive overall body instability. However, training knee extensors requires specific exercises which are not easily integrated in activities of daily life. For example, even if walking is one of the most popular daily exercise, its training effects are limited to lower leg muscles. To better integrate knee extensor training in daily life we are developing a training device which can apply additional mechanical load on the knee joint during daily normal walking, to extend the training effects of simple walking to knee extensors. We projected a longterm study to develop an integrated system which combines a training function with an assisting function. Integrated sensors measure the biological data of muscular activity to automatically select the proper mode in real-time. In 2019, we designed a prototype of the training device and evaluated its effects on the knee extensor muscle with preliminary experiments. The results validated the feasibility of the training system and showed that the training load need to be adapted to the gait phase during walking. In this study, we improved the training device with active resistance component to adjust the training load in real-time.
具有主动阻力成分的膝关节伸肌训练系统的开发
膝关节伸肌在保持平衡和稳定步态中起着关键作用。膝关节伸肌训练不足导致肌肉萎缩和进行性全身不稳定。然而,训练膝关节伸肌需要特定的运动,不容易融入日常生活活动。例如,即使步行是最受欢迎的日常运动之一,其训练效果也仅限于小腿肌肉。为了更好地将膝关节伸肌训练融入日常生活中,我们正在开发一种训练装置,可以在日常正常行走时对膝关节施加额外的机械负荷,将简单行走的训练效果扩展到膝关节伸肌。我们计划进行一项长期研究,以开发一个集训练功能和辅助功能于一体的综合系统。集成传感器测量肌肉活动的生物数据,实时自动选择合适的模式。2019年,我们设计了该训练装置的原型,并通过初步实验评估了其对膝关节伸肌的影响。实验结果验证了训练系统的可行性,并表明训练负荷需要与行走时的步态阶段相适应。在本研究中,我们改进了带有主动阻力组件的训练装置,以实时调整训练负荷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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