局部振动训练对神经肌肉活动、肌肉细胞和肌肉力量的影响:综述。

Abdullah Al Masud, Chwan-Li Shen, Hui-Ying Luk, Ming-Chien Chyu
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引用次数: 1

摘要

本文综述了局部振动训练(LVT)对肌肉力量的影响以及与之相关的神经肌肉和细胞动力反应的变化。应用局部/直接振动可以显著改变肌肉细胞的结构特性,提高肌肉力量。改进很大程度上取决于振动参数,如振幅和频率。20项临床研究的结果表明,肌电图(EMG)和最大自愿收缩(MVC)随振动频率的不同而变化,使用28-30 Hz频率的研究报告,在EMG (rms)值和MVC数据方面,肌肉活动的增加比使用更高频率的研究要大。由于局部振动的应用,更大的肌肉活动可能与大运动单位的招募有关。在LVT下,肱二头肌和肱三头肌伸展时的肌电图(rms)值比屈曲时增加得更多,这表明肌肉类型及其功能起着重要作用。虽然许多临床试验和动物研究已经证明了振动对肌肉的积极作用,但一个最佳的训练方案尚未建立。本研究试图通过回顾和分析已发表的有关神经肌肉活动变化的文献,探讨不同肌肉的最佳LVT条件。讨论了未来研究的方向,包括确定LVT的最佳条件和更好地理解振动对肌肉影响的相关机制。
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Impact of Local Vibration Training on Neuromuscular Activity, Muscle Cell, and Muscle Strength: A Review.

This paper presents a review of studies on the effects of local vibration training (LVT) on muscle strength along with the associated changes in neuromuscular and cell dynamic responses. Application of local/direct vibration can significantly change the structural properties of muscle cell and can improve muscle strength. The improvement is largely dependent on vibration parameters such as amplitude and frequency. The results of 20 clinical studies reveal that electromyography (EMG) and maximal voluntary contraction (MVC) vary depending on vibration frequency, and studies using frequencies of 28-30 Hz reported greater increases in muscle activity in terms of EMG (rms) value and MVC data than the studies using higher frequencies. A greater muscle activity can be related to the recruitment of large motor units due to the application of local vibration. A greater increase in EMG (rms) values for biceps and triceps during extension than flexion under LVT suggests that types of muscles and their functions play an important role. Although a number of clinical trials and animal studies have demonstrated positive effects of vibration on muscle, an optimum training protocol has not been established. An attempt is made in this study to investigate the optimal LVT conditions on different muscles through review and analysis of published results in the literature pertaining to the changes in the neuromuscular activity. Directions for future research are discussed with regard to identifying optimal conditions for LVT and better understanding of the mechanisms associated with effects of vibration on muscles.

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来源期刊
Critical Reviews in Biomedical Engineering
Critical Reviews in Biomedical Engineering Engineering-Biomedical Engineering
CiteScore
1.80
自引率
0.00%
发文量
25
期刊介绍: Biomedical engineering has been characterized as the application of concepts drawn from engineering, computing, communications, mathematics, and the physical sciences to scientific and applied problems in the field of medicine and biology. Concepts and methodologies in biomedical engineering extend throughout the medical and biological sciences. This journal attempts to critically review a wide range of research and applied activities in the field. More often than not, topics chosen for inclusion are concerned with research and practice issues of current interest. Experts writing each review bring together current knowledge and historical information that has led to the current state-of-the-art.
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