Hybrid Training System Consisting of Synchronized Neuromuscular Electrical Stimulation for Voluntary Exercise Using an Articular Motion Sensor.

Q4 Medicine Kurume Medical Journal Pub Date : 2024-12-10 Epub Date: 2024-08-05 DOI:10.2739/kurumemedj.MS7034006
Hiroo Matsuse, Hiroshi Tajima, Eriko Baba, Sohei Iwanaga, Masayuki Omoto, Ryuki Hashida, Takeshi Nago, Naoto Shiba
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Abstract

Neuromuscular electrical stimulation (NMES) is widely used for improving muscle strength, preventing muscle atrophy, and decreasing pain. Recently, NMES has become a substitute for exercise therapy for metabolism improvement and functional capacity improvement. However, NMES has several disadvantages. First, slow-twitch muscle contractions are insufficient because the recruitment pattern of NMES does not obey Henneman's size principle. Second, when using surface electrodes, it is difficult to contract deep skeletal muscles at the application site. Third, electrical stimulation causes discomfort. Therefore, we devised a simultaneous combination of NMES and voluntary muscle contractions to overcome the weak points of NMES. A hybrid training system (HTS) that resists the motion of a volitionally contracting agonist muscle with force generated by its electrically stimulated antagonist was developed as a technique to combine the application of NMES and volitional contractions. This motion sensor makes it possible to simultaneously combine voluntary movements with NMES. Our HTS synchronizes with voluntary movements, enhancing safety and reducing discomfort. This HTS enhances the exercise effect of even simple exercise. So far, our HTS has been reported to be effective for muscle strength enhancement, prevention of muscle atrophy, improvement of physical function, pain relief, enhancement of physical fitness, and improvement of metabolic function. HTS are expected to be useful methods in environments where sufficient exercise load is not available or for individuals with low exercise tolerance.

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利用关节运动传感器进行自主运动的同步神经肌肉电刺激混合训练系统。
神经肌肉电刺激(NMES)被广泛用于提高肌肉力量、防止肌肉萎缩和减轻疼痛。最近,神经肌肉电刺激已成为运动疗法的替代疗法,用于改善新陈代谢和提高功能能力。然而,NMES 有几个缺点。首先,由于 NMES 的募集模式不符合海尼曼大小原则,因此慢肌腱收缩不足。其次,在使用表面电极时,很难收缩应用部位的深层骨骼肌。第三,电刺激会引起不适。因此,我们设计了一种同时结合 NMES 和肌肉自主收缩的方法,以克服 NMES 的弱点。我们开发了一种混合训练系统 (HTS),该系统利用电刺激拮抗剂产生的力来抵制自主收缩激动肌的运动,从而将 NMES 的应用与自主收缩结合起来。这种运动传感器使同时结合自主运动和 NMES 成为可能。我们的 HTS 与自主运动同步,提高了安全性并减少了不适感。即使是简单的运动,这种 HTS 也能增强运动效果。据报道,迄今为止,我们的 HTS 在增强肌肉力量、防止肌肉萎缩、改善身体功能、缓解疼痛、增强体质和改善新陈代谢功能方面非常有效。在没有足够运动负荷的环境中,或对于运动耐受力较低的人来说,半身运动疗法有望成为有用的方法。
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来源期刊
Kurume Medical Journal
Kurume Medical Journal Medicine-Medicine (all)
CiteScore
0.20
自引率
0.00%
发文量
33
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