首页> 外文期刊>Clinical neurophysiology >Motor evoked potentials from masseter muscle induced by transcranial magnetic stimulation of the pyramidal tract: the importance of coil orientation.
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Motor evoked potentials from masseter muscle induced by transcranial magnetic stimulation of the pyramidal tract: the importance of coil orientation.

机译:经锥体束经颅磁刺激从咬肌产生的运动诱发电位:线圈方向的重要性。

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摘要

BACKGROUND: Reliable recording of motor evoked potentials (MEPs) of the masseter muscle by transcranial magnetic stimulation (TMS) has proved more difficult than from facial or intrinsic hand muscles. Up to now it was unclear whether this difficulty was due to methodological and/or anatomical reasons. METHODS: The mechanism of pyramidal cell activation in masseter MEPs was investigated by using magnetic and electric transcranial stimulation. Analysing the effect of magnetic coil positioning and orientation over the scalp, and scrutinizing the masseter recording technique to avoid compound motor action potential (CMAP) contamination from facial muscles, an optimized method of masseter MEPs was developed. RESULTS: In particular, an antero-lateral inducing current orientation in the stimulating coil, approximately paralleling the central sulcus, proved clearly more effective for the masseter muscles than the postero-lateral orientation (P=0.005) found optimal for intrinsic hand muscles. The thus evoked masseter MEPs by transcranial magnetic stimulation (TMS) were found to be identical in shape, amplitude and latency as those evoked by transcranial electric stimulation (TES), evidencing a direct rather than trans-synaptic activation of the pyramidal cells. CONCLUSIONS: We conclude that in TMS evoked MEPs of masseter muscles, the direct stimulation of the pyramidal tract is more easily achieved than the trans-synaptic activation, which is in contrast to the intrinsic hand muscles. We hypothesize that the presynaptic projections to pyramidal cells of the masticatory muscles are less abundant than in hand muscles, and are therefore less accessible to trans-synaptic stimulation.
机译:背景:经颅磁刺激(TMS)可靠记录咬肌的运动诱发电位(MEP)已比从面部或固有手部肌肉更困难。到目前为止,尚不清楚该困难是否是由于方法和/或解剖学原因引起的。方法:通过磁和电经颅刺激研究咬肌MEP中锥体细胞的激活机制。通过分析电磁线圈在头皮上的位置和方向的影响,并仔细检查咬肌记录技术,避免面部肌肉的复合运动动作电位(CMAP)污染,开发了一种优化的咬肌MEPs方法。结果:特别是,刺激线圈中的前外侧感应电流方向(大致平行于中央沟)明显比对后内侧方向(P = 0.005)更有效,对于咬肌来说,后外侧方向(P = 0.005)被认为是固有手部肌肉的最佳选择。发现经经颅磁刺激(TMS)诱发的咬肌MEP与经经颅电刺激(TES)诱发的咬肌MEP的形状,幅度和潜伏期相同,表明锥体细胞是直接激活而不是经突触激活。结论:我们得出结论,在TMS诱发的咬肌的MEP中,与经突触激活相比,更容易实现对锥体束的直接刺激,这与固有的手部肌肉相反。我们假设咀嚼肌的锥体细胞的突触前投射不如手部肌肉丰富,因此不易被跨突触刺激刺激。

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