首页> 外文期刊>European journal of applied physiology >Active biofeedback changes the spatial distribution of upper trapezius muscle activity during computer work.
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Active biofeedback changes the spatial distribution of upper trapezius muscle activity during computer work.

机译:主动生物反馈会在计算机工作期间改变上斜方肌活动的空间分布。

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The aim of this study was to investigate the spatio-temporal effects of advanced biofeedback by inducing active and passive pauses on the trapezius activity pattern using high-density surface electromyography (HD-EMG). Thirteen healthy male subjects performed computer work with superimposed feedback either eliciting passive (rest) or active (approximately 30% MVC) pauses based on fuzzy logic design and a control session with no feedback. HD-EMG signals of upper trapezius were recorded using a 5 x 13 multichannel electrode grid. From the HD-EMG recordings, two-dimensional maps of root mean square (RMS), relative rest time (RRT) and permuted sample entropy (PeSaEn) were obtained. The centre of gravity (CoG) and entropy of maps were used to quantify changes in the spatial distribution of muscle activity. PeSaEn as a measure of temporal heterogeneity for each channel, decreased over the whole map in response to active pause (P < 0.05) underlining a more homogenous activation pattern. Concomitantly, the CoG of RRT maps moved in caudal direction and the entropy of RMS maps as a measure of spatial heterogeneity over the whole recording grid, increased in response to active pause session compared with control session (no feedback) (P < 0.05). Active pause compared with control resulted in more heterogeneous coordination of trapezius compared with no feedback implying a more uneven spatial distribution of the biomechanical load. The study introduced new aspects in relation to the potential benefit of superimposed muscle contraction in relation to the spatial organization of muscle activity during computer work.
机译:这项研究的目的是通过使用高密度表面肌电图(HD-EMG)诱​​导斜方肌活动模式的主动和被动停顿来研究先进生物反馈的时空效应。 13位健康的男性受试者根据模糊逻辑设计和无反馈的控制会话,以叠加的反馈进行计算机工作,从而引起被动(静止)或主动(大约30%MVC)暂停。使用5 x 13多通道电极网格记录上斜方肌的HD-EMG信号。从HD-EMG记录中,获得了均方根(RMS),相对静止时间(RRT)和置换样品熵(PeSaEn)的二维图。重心(CoG)和地图的熵用于量化肌肉活动空间分布的变化。 PeSaEn作为每个通道的时间异质性度量,响应于主动停顿(P <0.05),在整个地图上有所下降,突显了更均匀的激活模式。同时,RRT映射的CoG向尾方向移动,RMS映射的熵作为整个记录网格上空间异质性的度量,与控制会话相比,对主动暂停会话的响应有所增加(无反馈)(P <0.05)。与控制相比,主动停顿导致斜方肌的异质性协调,而没有反馈则意味着生物力学负荷的空间分布更加不均匀。这项研究引入了新的方面,即在计算机工作期间,叠加肌肉收缩与肌肉活动的空间组织有关的潜在益处。

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