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A study of brain-evoked potential in 100 ms after transcranial magnetic stimulation

机译:在经颅磁刺激之后100 ms的脑诱发电位研究

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Transcranial magnetic stimulation (TMS)-evoked N100 component (TMS-N100) is a negative peak wave at about 100 ms after TMS to the motor cortex. To elucidate the contribution of somatosensory and auditory inputs to the generation of TMS-N100, and to determine the cognitive effect of this potential, we recorded TMS-N100 with the TMS-compatible whole-head 60-channel EEG system from 10 healthy subjects. The peak latencies and pattern of potential distributions were similar between TMS-N100 under the ignore condition and the potential evoked by SMT+AUD in 100 ms (SMT+AUD Nl) under the ignore condition. The amplitude of TMS-N100 significantly increased under the cognitive condition, while the latency and the potential distribution of TMS-N100 were not changed. These cognitive effects were also observed on SMT+AUD Nl under the cognitive condition. Therefore, inputs of TMS-N100 are the magnetic stimulation to the cerebral cortex and somatosensory and auditory inputs accompanied with TMS. The amplitude of TMS-N100 is increased by performing the cognitive task, thus, the cognitive status should be considered when the amplitude of TMS-N100 is interpreted.
机译:经颅磁刺激(TMS) - evoked N100分量(TMS-N100)是在TMS到电动机皮层之后约100ms的负峰值波。为了阐明躯体感觉和听觉输入对TMS-N100的产生以及确定该潜力的认知效果,我们将TMS-N100与来自10个健康受试者的TMS兼容的全头60通道EEG系统记录。在忽略条件下TMS-N100之间的峰值延迟和潜在分布的模式在100ms(SMT + AUD NL)下的SMT + AUD诱导的潜力相似。在认知条件下,TMS-N100的幅度显着增加,而TMS-N100的潜伏期和潜在分布不会改变。在认知条件下,还在SMT + AUD NL上观察到这些认知效果。因此,TMS-N100的输入是对脑皮层的磁刺激和伴随着TMS的躯体病理学和躯体感应谱系。通过执行认知任务来增加TMS-N100的幅度,因此,当解释TMS-N100的幅度时,应考虑认知状态。

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