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人类皮层神经兴奋性和可塑性诱导的变异性:一项脑刺激研究。

Variability in neural excitability and plasticity induction in the human cortex: A brain stimulation study.

作者信息

Hordacre Brenton, Goldsworthy Mitchell R, Vallence Ann-Maree, Darvishi Sam, Moezzi Bahar, Hamada Masashi, Rothwell John C, Ridding Michael C

机构信息

The Robinson Research Institute, School of Medicine, The University of Adelaide, Adelaide 5005, Australia.

The Robinson Research Institute, School of Medicine, The University of Adelaide, Adelaide 5005, Australia; Discipline of Psychiatry, School of Medicine, The University of Adelaide, Adelaide, Australia.

出版信息

Brain Stimul. 2017 May-Jun;10(3):588-595. doi: 10.1016/j.brs.2016.12.001. Epub 2016 Dec 9.

Abstract

BACKGROUND

The potential of non-invasive brain stimulation (NIBS) for both probing human neuroplasticity and the induction of functionally relevant neuroplastic change has received significant interest. However, at present the utility of NIBS is limited due to high response variability. One reason for this response variability is that NIBS targets a diffuse cortical population and the net outcome to stimulation depends on the relative levels of excitability in each population. There is evidence that the relative excitability of complex oligosynaptic circuits (late I-wave circuits) as assessed by transcranial magnetic stimulation (TMS) is useful in predicting NIBS response.

OBJECTIVE

Here we examined whether an additional marker of cortical excitability, MEP amplitude variability, could provide additional insights into response variability following application of the continuous theta burst stimulation (cTBS) NIBS protocol. Additionally we investigated whether I-wave recruitment was associated with MEP variability.

METHODS

Thirty-four healthy subjects (15 male, aged 18-35 years) participated in two experiments. Experiment 1 investigated baseline MEP variability and cTBS response. Experiment 2 determined if I-wave recruitment was associated with MEP variability.

RESULTS

Data show that both baseline MEP variability and late I-wave recruitment are associated with cTBS response, but were independent of each other; together, these variables predict 31% of the variability in cTBS response.

CONCLUSIONS

This study provides insight into the physiological mechanisms underpinning NIBS plasticity responses and may facilitate development of more reliable NIBS protocols.

摘要

背景

非侵入性脑刺激(NIBS)在探究人类神经可塑性以及诱导功能相关神经可塑性变化方面的潜力已引起广泛关注。然而,目前由于高反应变异性,NIBS的效用受到限制。这种反应变异性的一个原因是NIBS针对的是广泛的皮质群体,刺激的最终结果取决于每个群体中兴奋性的相对水平。有证据表明,经颅磁刺激(TMS)评估的复杂寡突触回路(晚I波回路)的相对兴奋性有助于预测NIBS反应。

目的

在此,我们研究了皮质兴奋性的另一个指标,即运动诱发电位(MEP)幅度变异性,是否能为连续theta爆发刺激(cTBS)NIBS方案应用后的反应变异性提供更多见解。此外,我们还研究了I波募集是否与MEP变异性相关。

方法

34名健康受试者(15名男性,年龄18 - 35岁)参与了两项实验。实验1研究了基线MEP变异性和cTBS反应。实验2确定I波募集是否与MEP变异性相关。

结果

数据表明,基线MEP变异性和晚I波募集均与cTBS反应相关,但彼此独立;这些变量共同预测了cTBS反应中31%的变异性。

结论

本研究深入了解了NIBS可塑性反应的生理机制,并可能有助于开发更可靠的NIBS方案。

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