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意志性肌肉活动与经颅磁刺激相结合可增加皮质脊髓兴奋性。

Volitional muscle activity paired with transcranial magnetic stimulation increases corticospinal excitability.

作者信息

Edwardson Matthew A, Avery David H, Fetz Eberhard E

机构信息

Department of Neurology, University of Washington Seattle, WA, USA.

Department of Psychiatry and Behavioral Sciences, University of Washington Seattle, WA, USA.

出版信息

Front Neurosci. 2015 Jan 12;8:442. doi: 10.3389/fnins.2014.00442. eCollection 2014.

Abstract

Studies of activity-dependent stimulation in non-human primates suggest that pairing each instance of volitional muscle activity with immediate intracortical stimulation causes long-term-potentiation-like effects. This technique holds promise for clinical rehabilitation, yet few investigators have tested activity-dependent stimulation in human subjects. In addition, no one has studied activity-dependent stimulation on the cortical representation for two separate target muscles in human subjects. We hypothesized that 40 min of transcranial magnetic stimulation (TMS) triggered from ballistic muscle activity at a mean repetition rate of 1 Hz would cause greater increases in corticospinal excitability than TMS-cued muscle activity, and that these changes would be specific to the muscle of study. Ten healthy human subjects participated in 4 separate sessions in this crossover study: (1) visually cued volitional activation of the abductor pollicis brevis (APB) muscle triggering TMS (APB-Triggered TMS), (2) volitional activation of APB in response to TMS delivered from a recording of the prior APB-Triggered TMS session (TMS-Cued APB), (3) visually cued volitional activation of the extensor digitorum (ED) triggering TMS (ED-Triggered TMS), and (4) volitional activation of ED in response to TMS delivered from a recording of the prior ED-Triggered TMS session (TMS-Cued ED). Contrary to our hypothesis, we discovered evidence of increased corticospinal excitability for all conditions as measured by change in area of the motor evoked potential. We conclude that single TMS pulses paired either before or after muscle activity may increase corticospinal excitability and that further studies are needed to clarify the optimal time window for inducing neural plasticity with activity-dependent stimulation. These findings will inform the design of future activity-dependent stimulation protocols for clinical rehabilitation.

摘要

对非人类灵长类动物进行的活动依赖性刺激研究表明,将每一次随意肌肉活动与即刻皮质内刺激配对会产生类似长时程增强的效应。这项技术在临床康复方面颇具前景,但很少有研究者在人类受试者身上测试活动依赖性刺激。此外,还没有人研究过活动依赖性刺激对人类受试者中两块不同目标肌肉的皮质表征的影响。我们假设,以平均1赫兹的重复频率由弹道式肌肉活动触发的40分钟经颅磁刺激(TMS),相比TMS提示的肌肉活动,会使皮质脊髓兴奋性有更大程度的增加,并且这些变化将特定于所研究的肌肉。在这项交叉研究中,10名健康人类受试者参与了4个独立的实验环节:(1)视觉提示下外展拇短肌(APB)的随意激活触发TMS(APB触发TMS),(2)响应于来自先前APB触发TMS实验环节记录的TMS进行APB的随意激活(TMS提示APB),(3)视觉提示下指伸肌(ED)的随意激活触发TMS(ED触发TMS),以及(4)响应于来自先前ED触发TMS实验环节记录的TMS进行ED的随意激活(TMS提示ED)。与我们的假设相反,我们发现,通过运动诱发电位面积变化测量,在所有条件下皮质脊髓兴奋性均有增加的证据。我们得出结论,在肌肉活动之前或之后配对的单个TMS脉冲可能会增加皮质脊髓兴奋性,并且需要进一步研究以阐明通过活动依赖性刺激诱导神经可塑性的最佳时间窗口。这些发现将为未来临床康复的活动依赖性刺激方案设计提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9619/4290610/aff6b51dc06e/fnins-08-00442-g0001.jpg

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