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首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >Rectification of SEMG as a tool to demonstrate synchronous motor unit activity during vibration
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Rectification of SEMG as a tool to demonstrate synchronous motor unit activity during vibration

机译:纠正SEMG作为演示振动过程中同步电动机单元活动的工具

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摘要

The use of surface electromyography (SEMG) in vibration studies is problematic since motion artifacts occupy the same frequency band with the SEMG signal containing information on synchronous motor unit activity. We hypothesize that using a harsher, 80-500. Hz band-pass filter and using rectification can help eliminate motion artifacts and provide a way to observe synchronous motor unit activity that is phase locked to vibration using SEMG recordings only. Multi Motor Unit (MMU) action potentials using intramuscular electrodes along with SEMG were recorded from the gastrocnemius medialis (GM) of six healthy male volunteers. Data were collected during whole body vibration, using vibration frequencies of 30. Hz, 35. Hz, 40. Hz or 50. Hz. A computer simulation was used to investigate the efficacy of filtering under different scenarios: with or without artifacts and/or motor unit synchronization. Our findings indicate that motor unit synchronization took place during WBV as verified by MMU recordings. A harsh filtering regimen along with rectification proved successful in demonstrating motor unit synchronization in SEMG recordings. Our findings were further supported by the results from the computer simulation, which indicated that filtering and rectification was efficient in discriminating motion artifacts from motor unit synchronization. We suggest that the proposed signal processing technique may provide a new methodology to evaluate the effects of vibration treatments using only SEMG. This is a major advantage, as this non-intrusive method is able to overcome movement artifacts and also indicate the synchronization of underlying motor units.
机译:在运动研究中使用表面肌电图(SEMG)存在问题,因为运动伪影与SEMG信号占据了相同的频带,而SEMG信号包含有关同步电机单元活动的信息。我们假设使用更苛刻的80-500。 Hz带通滤波器和使用整流可以帮助消除运动伪影,并提供一种方法来观察同步电机单元的活动,该活动仅通过SEMG记录就可锁定于振动。从六名健康男性志愿者的腓肠肌(GM)记录了使用肌内电极和SEMG的多运动单位(MMU)动作电位。在全身振动期间,使用30. Hz,35。Hz,40。Hz或50. Hz的振动频率收集数据。使用计算机仿真来研究在不同情况下的滤波效果:有无伪影和/或运动单元同步。我们的发现表明,通过MMU记录验证,在WBV期间发生了电机单元同步。严格的过滤方案以及整流功能已被证明可以成功地证明SEMG记录中的电机单元同步。计算机仿真的结果进一步支持了我们的发现,该结果表明,滤波和整流可以有效地将运动伪影与电机单元同步区分开。我们建议,提出的信号处理技术可能会提供一种仅使用SEMG评估振动处理效果的新方法。这是一个主要优点,因为这种非侵入式方法能够克服运动伪影,并且还可以指示基础电机单元的同步性。

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