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运动系统中的神经同步:我们目前了解到了什么?

Neural synchrony within the motor system: what have we learned so far?

作者信息

van Wijk Bernadette C M, Beek Peter J, Daffertshofer Andreas

机构信息

MOVE Research Institute, Faculty of Human Movement Sciences, VU University Amsterdam Amsterdam, Netherlands.

出版信息

Front Hum Neurosci. 2012 Sep 4;6:252. doi: 10.3389/fnhum.2012.00252. eCollection 2012.

Abstract

Synchronization of neural activity is considered essential for information processing in the nervous system. Both local and inter-regional synchronization are omnipresent in different frequency regimes and relate to a variety of behavioral and cognitive functions. Over the years, many studies have sought to elucidate the question how alpha/mu, beta, and gamma synchronization contribute to motor control. Here, we review these studies with the purpose to delineate what they have added to our understanding of the neural control of movement. We highlight important findings regarding oscillations in primary motor cortex, synchronization between cortex and spinal cord, synchronization between cortical regions, as well as abnormal synchronization patterns in a selection of motor dysfunctions. The interpretation of synchronization patterns benefits from combining results of invasive and non-invasive recordings, different data analysis tools, and modeling work. Importantly, although synchronization is deemed to play a vital role, it is not the only mechanism for neural communication. Spike timing and rate coding act together during motor control and should therefore both be accounted for when interpreting movement-related activity.

摘要

神经活动的同步被认为是神经系统信息处理所必需的。局部和区域间的同步在不同频率范围内普遍存在,并与多种行为和认知功能相关。多年来,许多研究试图阐明α/μ、β和γ同步如何对运动控制产生影响。在此,我们回顾这些研究,目的是厘清它们对我们理解运动神经控制所增添的内容。我们强调了关于初级运动皮层振荡、皮层与脊髓之间的同步、皮层区域之间的同步以及一些运动功能障碍中的异常同步模式的重要发现。同步模式的解释受益于结合侵入性和非侵入性记录的结果、不同的数据分析工具以及建模工作。重要的是,尽管同步被认为起着至关重要的作用,但它并非神经通信的唯一机制。在运动控制过程中,动作电位发放时间和速率编码共同发挥作用,因此在解释与运动相关的活动时,两者都应予以考虑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be6f/3432872/0f6e6f3fae5f/fnhum-06-00252-g0001.jpg

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