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连续 theta 爆发刺激的强度,而不是用来引出运动诱发电位的波形,影响其在人类运动皮层的结果。

The intensity of continuous theta burst stimulation, but not the waveform used to elicit motor evoked potentials, influences its outcome in the human motor cortex.

机构信息

Department of Neurology, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.

Department of Neurology, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan; Department of Neurology, Kyorin University School of Medicine, Tokyo, Japan.

出版信息

Brain Stimul. 2018 Mar-Apr;11(2):400-410. doi: 10.1016/j.brs.2017.12.003. Epub 2017 Dec 15.

DOI:10.1016/j.brs.2017.12.003
PMID:29258807
Abstract

BACKGROUND

Responses to continuous theta burst stimulation (cTBS) applied to the human primary motor cortex are highly variable between individuals. However, little is known about how to improve the after-effects of cTBS by adjusting the protocol characteristics.

OBJECTIVE

We examined whether current directions adopted in the measurement of cortical motor excitability indexed as motor evoked potentials (MEPs) affect the responses to cTBS. We also tested whether the stimulus intensity of cTBS influences the after-effects.

METHODS

Thirty-one healthy volunteers participated. The after-effects of cTBS with the conventional intensity of 80% of individual active motor threshold (AMT) (cTBS) were tested by measuring MEP amplitudes induced by not only posterior-anterior (PA) but also anterior-posterior (AP) and biphasic (PA-AP) currents. We also investigated cTBS with 65% AMT (cTBS) and 100% AMT (cTBS) in subjects who showed depression of MEP amplitudes after cTBS, as well as cTBS in subjects in whom facilitation of MEPs was induced by cTBS RESULTS: Current directions in MEP measurement had no influence on the cTBS responses. In subjects whose MEPs were depressed by cTBS, cTBS partly induced MEP facilitation, while cTBS abolished the after-effects. In subjects who showed MEP facilitation by cTBS, cTBS partly induced MEP depression.

CONCLUSIONS

Stimulus intensity of cTBS influenced the responses to cTBS, and lowering stimulus intensity induced the expected after-effects of cTBS in some subjects.

摘要

背景

应用于人类初级运动皮层的连续 theta 爆发刺激(cTBS)的反应在个体之间高度可变。然而,对于如何通过调整方案特征来改善 cTBS 的后效知之甚少。

目的

我们检查了在测量皮质运动兴奋性时采用的电流方向(如运动诱发电位(MEP))是否会影响 cTBS 的反应。我们还测试了 cTBS 的刺激强度是否会影响后效。

方法

31 名健康志愿者参与了研究。通过测量不仅在后前(PA)而且在前后(AP)和双相(PA-AP)电流诱导的 MEP 幅度,测试了常规强度为 80%个体主动运动阈值(AMT)的 cTBS(cTBS)的后效。我们还研究了在 cTBS 后 MEP 幅度降低的受试者中使用 65% AMT(cTBS)和 100% AMT(cTBS)的 cTBS,以及在 cTBS 诱导 MEP 易化的受试者中进行的 cTBS。

结果

MEP 测量中的电流方向对 cTBS 反应没有影响。在 cTBS 使 MEP 降低的受试者中,cTBS 部分诱导 MEP 易化,而 cTBS 消除了后效。在 cTBS 诱导 MEP 易化的受试者中,cTBS 部分诱导 MEP 抑制。

结论

cTBS 的刺激强度影响 cTBS 的反应,降低刺激强度在一些受试者中诱导出预期的 cTBS 后效。

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