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错误相关的感觉运动后动和前周期β波段活动的调制来自于不同的神经基质,并不反映传出信号处理。

Error-related modulations of the sensorimotor post-movement and foreperiod beta-band activities arise from distinct neural substrates and do not reflect efferent signal processing.

机构信息

Institut de Neurosciences de la Timone, UMR7289, Aix-Marseille Université/CNRS, Marseille, France.

Nuffield Department of Clinical Neurosciences, John Radcliffe Hospital, University of Oxford, Oxford, UK.

出版信息

Neuroimage. 2019 Jan 1;184:10-24. doi: 10.1016/j.neuroimage.2018.09.013. Epub 2018 Sep 7.

Abstract

While beta activity has been extensively studied in relation to voluntary movement, its role in sensorimotor adaptation remains largely uncertain. Recently, it has been shown that the post-movement beta rebound as well as beta activity during movement-preparation are modulated by movement errors. However, there are critical functional differences between pre- and post-movement beta activities. Here, we addressed two related open questions. Do the pre- and post-movement error-related modulations arise from distinct neural substrates? Do these modulations relate to efferent signals shaping muscle-activation patterns or do they reflect integration of sensory information, intervening upstream of the motor output? For this purpose, first we exploited independent component analysis (ICA) which revealed a double dissociation suggesting that distinct neural substrates are recruited in error-related beta-power modulations observed before and after movement. Second, we compared error-related beta oscillation responses observed in two bimanual reaching tasks involving similar movements but different interlimb coordination, and in which the same mechanical perturbations induced different behavioral adaptive responses. While the task difference was not reflected in the post-movement beta rebound, the pre-movement beta activity was differently modulated according to the interlimb coordination. Critically, we show an uncoupling between the behavioral and the electrophysiological responses during the movement preparation phase, which demonstrates that the error-related modulation of the foreperiod beta activity does not reflect changes in the motor output from primary motor cortex. It seems instead to relate to higher level processing of sensory afferents, essential for sensorimotor adaptation.

摘要

虽然β活动在与自主运动相关的研究中已得到广泛研究,但它在感觉运动适应中的作用仍存在很大的不确定性。最近,已经表明,运动后β反弹以及运动准备期间的β活动都受到运动误差的调节。然而,在运动前和运动后的β活动之间存在关键的功能差异。在这里,我们解决了两个相关的开放性问题。运动前和运动后的与错误相关的调制是否来自不同的神经基质?这些调制是否与塑造肌肉激活模式的传出信号有关,还是反映了感觉信息的整合,在运动输出的上游进行?为此,我们首先利用独立成分分析(ICA),发现了一种双重分离,表明在运动前后观察到的与错误相关的β功率调制中,存在不同的神经基质被招募。其次,我们比较了两个涉及相似运动但不同肢体协调的双手臂伸展任务中观察到的与错误相关的β振荡反应,以及在这些任务中,相同的机械干扰会导致不同的行为自适应反应。虽然任务差异在运动后β反弹中没有反映出来,但运动前β活动根据肢体间协调被不同地调节。至关重要的是,我们在运动准备阶段展示了行为和电生理反应之间的解耦,这表明前周期β活动的与错误相关的调制并不反映来自初级运动皮层的运动输出的变化。相反,它似乎与感觉传入的更高水平的处理有关,这对感觉运动适应至关重要。

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