首页> 外文会议>Engineering in Medicine and Biology Society, 1997. Proceedings of the 19th Annual International Conference of the IEEE >Muscle mechanomyographic and electromyographic signals compared with reference to action potential average propagation velocity
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Muscle mechanomyographic and electromyographic signals compared with reference to action potential average propagation velocity

机译:肌肉动作力学和肌电图信号与动作电位平均传播速度的比较

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The mechanomyogram (MMG) is the signal detected from the muscle due to the mechanical vibrations that accompany muscle contraction. It is being increasingly used for investigating muscle activities. Many models have been proposed for explaining the generation of this signal. In this paper a system for the simultaneous measurement of both the surface EMG and MMG is used to investigate and compare the mechanisms responsible for the generation of these signals. Two piezoelectric transducers placed a known distance apart on the muscle along the path of propagation of action potential were used to detect two MMG signals. At the same time, stainless steel wire electrodes are used to detect two surface EMG signals from the same areas of muscle monitored by the piezoelectric transducers. The measurements were carried out on the Biceps Brachii under a sustained voluntary light contraction. It was found that the two MMG signals are delayed with respect to each other by the same value of time delay that exists between the EMG signals. The time delay between the signals was estimated using the cross-correlation function. This shows that a similar mechanism to that of the EMG exists for the MMG, and that the MMG is the summation of twitches that seem to propagate along the motor units at the same rate as motor unit action potentials.
机译:机电图(MMG)是由于伴随肌肉收缩的机械振动而从肌肉中检测到的信号。它正越来越多地用于研究肌肉活动。已经提出了许多模型来解释该信号的产生。在本文中,用于同时测量表面EMG和MMG的系统用于研究和比较产生这些信号的机制。两个压电换能器沿着动作电位的传播路径在肌肉上放置了一个已知距离,用于检测两个MMG信号。同时,不锈钢丝电极用于检测来自压电换能器监测的同一肌肉区域的两个表面肌电信号。在持续的自愿轻收缩下,在肱二头肌上进行测量。已经发现,两个MMG信号相对于彼此延迟了EMG信号之间存在的相同的时间延迟值。使用互相关函数估计信号之间的时间延迟。这表明对于MMG存在与EMG类似的机制,并且MMG是抽搐的总和,这些抽搐的总和似乎是沿着与运动单元动作电位相同的速率沿运动单元传播的。

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