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Brain State-Dependent Closed-Loop Modulation of Paired Associative Stimulation Controlled by Sensorimotor Desynchronization

机译:感觉运动去同步控制的成对关联刺激的大脑状态依赖性闭环调制。

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摘要

>Background: Pairing peripheral electrical stimulation (ES) and transcranial magnetic stimulation (TMS) increases corticospinal excitability when applied with a specific temporal pattern. When the two stimulation techniques are applied separately, motor imagery (MI)-related oscillatory modulation amplifies both ES-related cortical effects—sensorimotor event-related desynchronization (ERD), and TMS-induced peripheral responses—motor-evoked potentials (MEP). However, the influence of brain self-regulation on the associative pairing of these stimulation techniques is still unclear.>Objective: The aim of this pilot study was to investigate the effects of MI-related ERD during associative ES and TMS on subsequent corticospinal excitability.>Method: The paired application of functional electrical stimulation (FES) of the extensor digitorum communis (EDC) muscle and subsequent single-pulse TMS (110% resting motor threshold (RMT)) of the contralateral primary motor cortex (M1) was controlled by beta-band (16–22 Hz) ERD during MI of finger extension and applied within a brain-machine interface environment in six healthy subjects. Neural correlates were probed by acquiring the stimulus-response curve (SRC) of both MEP peak-to-peak amplitude and area under the curve (AUC) before and after the intervention.>Result: The application of approximately 150 pairs of associative FES and TMS resulted in a significant increase of MEP amplitudes and AUC, indicating that the induced increase of corticospinal excitability was mediated by the recruitment of additional neuronal pools. MEP increases were brain state-dependent and correlated with beta-band ERD, but not with the background EDC muscle activity; this finding was independent of the FES intensity applied.>Conclusion: These results could be relevant for developing closed-loop therapeutic approaches such as the application of brain state-dependent, paired associative stimulation (PAS) in the context of neurorehabilitation.
机译:>背景:将外围电刺激(ES)和经颅磁刺激(TMS)配对使用特定的时间模式可以增加皮质脊髓兴奋性。当分别应用两种刺激技术时,与运动图像(MI)相关的振荡调制会同时放大与ES相关的皮质效应-感觉运动事件相关的失步(ERD)和TMS诱导的周围反应-运动诱发电位(MEP)。然而,大脑自我调节对这些刺激技术的关联配对的影响尚不清楚。>目的:这项初步研究的目的是调查在关联的ES和ES期间MI相关ERD的影响。 TMS对随后的皮质脊髓兴奋性的影响。>方法:联合应用指趾伸肌(EDC)肌肉的功能性电刺激(FES)和随后的单脉冲TMS(110%静息运动阈值(RMT))对侧初级运动皮层(M1)的活动在手指伸张MI期间受β波段(16-22 Hz)ERD控制,并应用于六个健康受试者的脑机界面环境中。通过获取干预前后MEP峰峰值幅度和曲线下面积(AUC)的刺激响应曲线(SRC)来探查神经相关性。>结果:应用约150对关联的FES和TMS导致MEP振幅和AUC显着增加,表明皮质脊髓兴奋性的诱导增加是由补充其他神经元池介导的。 MEP的增加与大脑状态有关,并且与β波段ERD相关,但与背景EDC肌肉活动无关。此结果与所应用的FES强度无关。>结论:这些结果可能与开发闭环治疗方法有关,例如在脑中应用依赖于状态的配对联合联想刺激(PAS)神经康复。

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