首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >The image of motor units architecture in the mechanomyographic signal during the single motor unit contraction: in vivo and simulation study
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The image of motor units architecture in the mechanomyographic signal during the single motor unit contraction: in vivo and simulation study

机译:单个运动单元收缩过程中机电成像信号中运动单元结构的图像:体内和模拟研究

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The mechanomyographic (MMG) signal analysis has been performed during single motor unit (MU) contractions of the rat medial gastrocnemius muscle. The MMG has been recorded as a muscle surface displacement by using a laser distance sensor. The profiles of the MMG signal let to categorize these signals for particular MUs into three classes. Class MMG-P (positive) comprises MUs with the MMG signal similar to the force signal profile, where the distance between the muscle surface and the laser sensor increases with the force increase. The class MMG-N (negative) has also the MMG profile similar to the force profile, however the MMG is inverted in comparison to the force signal and the distance measured by using laser sensor decreases with the force increase. The third class MMG-M (mixed) characterize the MMG which initially increases with the force increases and when the force exceeds some level it starts to decrease towards the negative values. The semi-pennate muscle model has been proposed, enabling estimation of the MMG generated by a single MU depending on its localization. The analysis have shown that in the semi-pennate muscle the localization of the MU and the relative position of the laser distance sensor determine the MMG profile and amplitude. Thus, proposed classification of the MMG recordings is not related to the physiological types of MUs, but only to the MU localization and mentioned sensor position. When the distance sensor is located over the middle of the muscle belly, a part of the muscle fibers have endings near the location of the sensor beam. For the MU MMG of class MMG-N the deflection of the muscle surface proximal to the sensor mainly influences the MMG recording, whereas for the MU MMG class MMG-P, it is mainly the distal muscle surface deformation. For the MU MMG of MMG-M type the effects of deformation within the proximal and distal muscle surfaces overlap. The model has been verified with experimental recordings, and its responses are consistent and adequate in comparison to the experimental data.
机译:在大鼠内侧腓肠肌的单个运动单位(MU)收缩过程中已执行了机械电子学(MMG)信号分析。通过使用激光距离传感器将MMG记录为肌肉表面位移。 MMG信号的配置文件可将特定MU的这些信号分为三类。 MMG-P类(正)包括具有类似于力信号曲线的MMG信号的MU,其中,肌肉表面和激光传感器之间的距离随着力的增加而增加。 MMG-N类(负)也具有类似于力分布的MMG分布,但是MMG与力信号相比是倒置的,使用激光传感器测量的距离随着力的增加而减小。第三类MMG-M(混合)表示MMG,它最初随着力的增加而增加,当力超过某个水平时,它开始朝负值减小。已经提出了半垂体肌肉模型,使得能够根据单个MU的定位来估计其生成的MMG。分析表明,在半尾状肌中,MU的位置和激光距离传感器的相对位置决定了MMG的轮廓和振幅。因此,MMG记录的拟议分类与MU的生理类型无关,而仅与MU定位和提到的传感器位置有关。当距离传感器位于肌肉腹部的中部时,一部分肌肉纤维的末端靠近传感器束的位置。对于MMG-N类的MU MMG,靠近传感器的肌肉表面的挠曲主要影响MMG记录,而对于MMG MMG-P类的MU MMG,则主要是远端肌肉表面变形。对于MMG-M类型的MU MMG,近端和远端肌肉表面内的变形效果重叠。该模型已通过实验记录进行了验证,与实验数据相比,其响应是一致且足够的。

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