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首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >Bulk movement included in multi-channel mechanomyography: Similarity between mechanomyography of resting muscle and that of contracting muscle
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Bulk movement included in multi-channel mechanomyography: Similarity between mechanomyography of resting muscle and that of contracting muscle

机译:大通道运动包括在多通道机械摄影中:静止肌肉的机械摄影与收缩肌肉的机械摄影之间的相似性

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摘要

Although mechanomyography (MMG) reflects local vibrations from contracting muscle fibers, it also includes bulk movement: deformation in global soft tissue around measuring points. To distinguish between them, we compared the multi-channel MMG of resting muscle, which dominantly reflected the bulk movement caused by arterial pulsations, to that of the contracting muscle. The MMG signals were measured at five points around the upper arms of 10 male subjects during resting and during isometric ramp contraction from 5% to 85% of maximal voluntary contraction (MVC) of the biceps brachii muscle. The characteristics of bulk movement were defined as the amplitude distribution and phase relation among the five MMG signals. The bulk movement characteristics during the rest state were not necessarily the same among the subjects. However, below 30. Hz, each subject's characteristics remained the same from the rest state (0% MVC) to the contracting state (80% MVC), at which the bulk movement mainly originates from muscle contraction activity. Results show that the MMG of the low frequency domain (<30. Hz) includes bulk movement depending on the mechanical deformation characteristics of each subject's body, for a wide range of muscle contraction intensities.
机译:尽管机械测距法(MMG)反映了肌肉纤维收缩引起的局部振动,但它也包括整体运动:测量点周围的整体软组织变形。为了区分它们,我们比较了静息肌的多通道MMG与收缩肌的多通道MMG(主要反映了由动脉搏动引起的整体运动)。 MMG信号是在休息期间和等距坡道收缩时从10位男性受试者的上臂周围的五个点处测量的,该收缩是肱二头肌最大自愿收缩(MVC)的5%到85%。体运动的特征被定义为五个MMG信号之间的振幅分布和相位关系。静止状态下的主体运动特征在受试者之间不一定相同。但是,低于30 Hz时,从静止状态(0%MVC)到收缩状态(80%MVC),每位受试者的特征均保持不变,在此状态下,整体运动主要源自肌肉的收缩活动。结果显示,低频域(<30。Hz)的MMG包含大量运动,具体取决于每个受试者身体的机械变形特性,并且具有广泛的肌肉收缩强度。

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