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首页> 外文期刊>Journal of Brachial Plexus and Peripheral Nerve Injury >Application of magnetic motor stimulation for measuring conduction time across the lower part of the brachial plexus
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Application of magnetic motor stimulation for measuring conduction time across the lower part of the brachial plexus

机译:磁刺激刺激在测量臂丛神经下部传导时间中的应用

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ObjectiveThe objective of this study was to calculate central motor conduction time (CMCT) of median and ulnar nerves in normal volunteers. Conduction time across the lower part of the brachial plexus was measured by using magnetic stimulation over the motor cortex and brachial plexus and recording the evoked response in hand muscles.DesignThis descriptive study was done on 112 upper limbs of healthy volunteers. Forty-six limbs belonging to men and sixty-six belonging to women were studied by magnetic stimulation of both motor cortex and brachial plexus and recording the evoked response in thenar and hypothenar muscles. Stimulation of the motor cortex gives rise to absolute latency of each nerve whereas stimulation of the brachial plexus results in peripheral conduction time. The difference between these two values was considered the central motor conduction time (CMCT).ResultsIn summary the result are as follows; Cortex-thenar latency = 21.4 ms (SD = 1.7), CMCT-thenar = 9.6 ms (SD = 1.9), Cortex-hypothenar latency = 21.3 ms (SD = 1.8), CMCT-hypothenar = 9.4 ms (SD = 1.8).ConclusionThese findings showed that there is no meaningful difference between two genders. CMCT calculated by this method is a little longer than that obtained by electrical stimulation that is due to the more distally placed second stimulation. We recommend magnetic stimulation as the method of choice to calculate CMCT and its use for lower brachial plexus conduction time. This method could serve as a diagnostic tool for diagnosis of lower plexus entrapment and injuries especially in early stages.
机译:目的本研究的目的是计算正常志愿者中位和尺神经的中枢运动传导时间(CMCT)。通过对运动皮层和臂丛进行磁刺激并记录手部肌肉的诱发反应来测量臂丛神经下部的传导时间。设计是对112名健康志愿者的上肢进行的描述性研究。通过运动皮层和臂丛神经的磁刺激研究了男性的四十六肢和女性的六十六肢,并记录了在第纳尔和上皮肌的诱发反应。运动皮层的刺激引起每条神经的绝对潜伏期,而臂丛神经的刺激则导致周围传导时间。这两个值之间的差异被认为是中央马达传导时间(CMCT)。皮层-thenar潜伏期= 21.4毫秒(SD = 1.7),CMCT-thenar = 9.6毫秒(SD = 1.9),皮质-下皮膜的潜伏期= 21.3毫秒(SD = 1.8),CMCT-下皮膜的潜伏期= 9.4 ms(SD = 1.8)。结论这些发现表明,两个性别之间没有有意义的差异。通过这种方法计算出的CMCT比通过电刺激获得的CMCT稍长一些,这是由于第二次刺激放置在更远端。我们建议使用磁刺激作为计算CMCT的首选方法,并将其用于降低臂丛神经传导时间。该方法可作为诊断下神经丛夹带和损伤的诊断工具,尤其是在早期阶段。

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