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Evidence that a transcortical pathway contributes to stretch reflexes in the tibialis anterior muscle in man

机译:跨皮质通路有助于男人胫骨前肌伸展反射的证据

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摘要

class="enumerated" style="list-style-type:decimal">In human subjects, stretch applied to ankle dorsiflexors elicited three bursts of reflex activity in the tibialis anterior (TA) muscle (labelled M1, M2 and M3) at mean onset latencies of 44, 69 and 95 ms, respectively. The possibility that the later of these reflex bursts is mediated by a transcortical pathway was investigated.The stretch evoked a cerebral potential recorded from the somatosensory cortex at a mean onset latency of 47 ms in nine subjects. In the same subjects a compound motor-evoked potential (MEP) in the TA muscle, evoked by magnetic stimulation of the motor cortex, had a mean onset latency of 32 ms. The M1 and the M2 reflexes thus had too short a latency to be caused by a transcortical pathway (minimum latency, 79 ms (47 + 32)), whereas the later part of the M2 and all of the M3 reflex had a sufficiently long latency.When the transcranial magnetic stimulation was timed so that the MEP arrived in the TA muscle at the same time as the M1 or M2 reflexes, no extra increase in the potential was observed. However, when the MEP arrived at the same time as the M3 reflex a significant (P < 0.01) extra-facilitation was observed in all twelve subjects investigated.Peaks evoked by transcranial magnetic stimulation in the post-stimulus time histogram of the discharge probability of single TA motor units (n = 28) were strongly facilitated when they occurred at the same time as the M3 response. This was not the case for the first peaks evoked by electrical transcranial stimulation in any of nine units investigated.We suggest that these findings are explained by an increased cortical excitability following TA stretch and that this supports the hypothesis that the M3 response in the TA muscle is - at least partly - mediated by a transcortical reflex.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 在人类受试者中,施加于踝背屈的拉伸在胫骨前(TA)肌肉(分别标记为M1,M2和M3)中引起了3次反射活动爆发,平均发作潜伏期分别为44、69和95 ms。研究了这些反射性爆发的后期是由经皮层途径介导的可能性。 该伸展运动诱发了来自体感皮层的脑电势记录,平均发作潜伏期为47 ms,共9名受试者。在同一受试者中,通过运动皮层的磁刺激诱发的TA肌肉中的复合运动诱发电位(MEP)的平均发作潜伏期为32 ms。因此,M1和M2反射的延迟时间太短,无法通过经皮层通路引起(最小延迟时间为79 ms(47 + 32)),而M2的后期和所有M3反射的延迟时间都足够长 当定时经颅磁刺激使MEP在M1或M2反射的同时到达TA肌肉时,未观察到电位的额外增加。但是,当MEP与M3反射同时到达时,在所有接受调查的十二名受试者中均观察到明显的(P <0.01)促进作用。 刺激后经颅磁刺激诱发的峰值当单个TA电机单元(n = 28)与M3响应同时发生时,其放电概率的时间直方图得到了极大的促进。在研究的9个单位中,经颅电刺激诱发的第一个峰并非如此。 我们建议,这些发现可以通过TA拉伸后皮质兴奋性增加来解释,这支持了以下假设: TA肌肉中的M3反应至少(部分)是通过皮层反射介导的。

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