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Spinal Cord-Evoked Potentials and Muscle Responses Evoked by Transcranial Magnetic Stimulation in 10 Awake Human Subjects

机译:10名清醒人类受试者经颅磁刺激引起的脊髓诱发电位和肌肉反应

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摘要

Transcranial magnetic stimulation (TCMS) causes leg muscle contractions, but the neural structures in the brain that are activated by TCMS and their relationship to these leg muscle responses are not clearly understood. To elucidate this, we concomitantly recorded leg muscle responses and thoracic spinal cord-evoked potentials (SCEPs) after TCMS for the first time in 10 awake, neurologically intact human subjects. In this report we provide evidence of direct and indirect activation of corticospinal neurons after TCMS. In three subjects, SCEP threshold (T) stimulus intensities recruited both the D wave (direct activation of corticospinal neurons) and the first I wave (I1, indirect activation of corticospinal neurons). In one subject, the D, I1, and I2 waves were recruited simultaneously, and in another subject, the I1 and I2 waves were recruited simultaneously. In the remaining five subjects, only the I1 wave was recruited first. More waves were recruited as the stimulus intensity increased. The presence of D and I waves in all subjects at low stimulus intensities verified that TCMS directly and indirectly activated corticospinal neurons supplying the lower extremities. Leg muscle responses were usually contingent on the SCEP containing at least four waves (D, I1, I2, and I3).
机译:经颅磁刺激(TCMS)会导致腿部肌肉收缩,但是尚不明确了解TCMS激活的大脑神经结构及其与这些腿部肌肉反应的关系。为了阐明这一点,我们同时记录了10名清醒,神经系统完整的人类受试者TCMS后的腿部肌肉反应和胸脊髓诱发电位(SCEP)。在本报告中,我们提供了TCMS后皮质脊髓神经元直接和间接激活的证据。在三名受试者中,SCEP阈值(T)刺激强度同时吸收了D波(直接激活皮质神经元)和第一个I波(I1,间接激活皮质神经元)。在一个受试者中,同时招募D,I1和I2波,在另一受试者中,同时招募I1和I2波。在其余五个主题中,仅I1波被首先招募。随着刺激强度的增加,招募了更多的波浪。所有受试者在低刺激强度下均存在D波和I波,这证明TCMS直接和间接激活了供给下肢的皮质脊髓神经元。腿部肌肉反应通常取决于SCEP,该SCEP至少包含四个波(D,I1,I2和I3)。

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