...
首页> 外文期刊>Electromyography and Clinical Neurophysiology: International Bimonthly Review >Surface detected potentials of normal and reinnervated motor units a simulation study for muscles consisted of short fibres.
【24h】

Surface detected potentials of normal and reinnervated motor units a simulation study for muscles consisted of short fibres.

机译:正常和神经支配的运动单位的表面检测电位,是由短纤维组成的肌肉模拟研究。

获取原文
获取原文并翻译 | 示例
           

摘要

We aimed to check whether the characteristics used up to now in macro EMG to distinguish between normal and reinnervated motor unit potentials (MUPs), were suitable for surface detected MUPs. MUPs produced by normal and reinnervated MUs were simulated with a fast and precise convolution model. An increased number of fibres in the MU territory enhanced the amplitude, area and RMS of the MUP proportionally irrespective of the MU-electrode distance. An increased scatter of the end-plates and greater desynchronization in the fibres' activation decreased the MUP amplitude and affected the temporal characteristics of the MUP (duration of the negative phase and its area to amplitude ratio). The effects were more pronounced at shorter distances. At larger distances, the effect of the MU-electrode distance on temporal and amplitude characteristics of MUPs was much stronger than that of the parameters changed with reinnervation. We conclude that reinnervated MUs consisting of short fibres can not be distinguished from the normal ones by means of characteristics of MUP used in macro EMG. To discriminate reinnervated MUs non-invasively, the MUP amplitude should be normalized in respect of the MU-electrode distance or other MUP characteristics (independent of MU-electrode distance and sensitive to reinnervation) should be used.
机译:我们旨在检查宏EMG迄今为止用于区分正常和神经支配的运动单位电位(MUP)的特征是否适合于表面检测到的MUP。用快速和精确的卷积模型模拟正常和神经支配的MU产生的MUP。无论MU电极的距离如何,在MU域中增加的纤维数量都会成比例地增加MUP的幅度,面积和RMS。端板的散布增加和纤维活化的不同步性增加,降低了MUP振幅,并影响了MUP的时间特性(负相的持续时间及其面积与振幅之比)。在较短距离下效果更明显。在较大距离处,MU电极距离对MUP的时间和幅度特性的影响要强于随神经支配而变化的参数。我们得出结论,由短纤维组成的神经支配的MU不能通过宏观EMG中使用的MUP的特性与正常的区别。为了以非侵入方式区分神经支配的MU,应根据MU电极距离或其他MUP特性(独立于MU电极距离且对神经支配敏感)对MUP幅度进行标准化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号