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Stimulation at the cervicomedullary junction in human subjects

机译:在人体受试者中患有宫颈髓质髓结合的刺激

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摘要

In awake human subjects, corticospinal axons can be activated at the level of the cervicomedullary junction by electrical or magnetic stimulation. Such stimuli evoke single descending volleys which activate motoneurones and elicit responses in muscles of the upper limb. These responses (cervicomedullary motor evoked potentials, CMEPs) have a large monosynaptic component and can be used to test motoneurone excitability in a variety of tasks. CMEPs can be elicited in resting muscle and during all strengths of voluntary contraction. Examination of CMEPs during and after voluntary contractions reveals changes in motoneurone excitability but also suggests activity-dependent changes in the efficacy of the corticospinal pathway. Because they test the same subcortical pathway as transcranial magnetic stimulation, but are unaffected by altered excitability at a cortical level, CMEPs often offer the most appropriate comparison to allow interpretation of changes in motor evoked potentials. The advantages and disadvantages of stimulation at the cervicomedullary junction as a test of motoneurone excitability are reviewed. (C) 2005 Elsevier Ltd. All rights reserved.
机译:在清醒的人体受试者中,通过电或磁刺激可以在宫颈髓质内连接的水平下激活皮质枢轴。这种刺激唤起单一下降葡萄酒,激活动机官气质细胞,并在上肢的肌肉中引出反应。这些响应(颈椎测量电机诱发电位,CMEP)具有大型单突触部件,可用于测试各种任务中的运动神经元兴奋性。 CMEP可以在休息的肌肉和志愿收缩的所有优势中引发。在自愿收缩期间和之后的CMEP检测揭示了运动神经酮兴奋性的变化,但也表明了皮质脊柱途径的疗效的活性依赖性变化。因为它们测试了与经颅磁刺激相同的皮质点途径,但是在皮质水平时不受兴奋性的改变,因此CMEPS通常提供最合适的比较,以允许对电动机诱发电位的变化解释。综述了宫颈髓系交界处刺激作为运动神经酮兴奋性试验的优点和缺点。 (c)2005年elestvier有限公司保留所有权利。

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