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主动和被动手指运动期间的皮质运动相干性。

Corticokinematic coherence during active and passive finger movements.

机构信息

Brain Research Unit, O.V. Lounasmaa Laboratory and MEG Core, Aalto NeuroImaging, School of Science, Aalto University, P.O. Box 15100, FI-00076 AALTO, Espoo, Finland.

出版信息

Neuroscience. 2013 May 15;238:361-70. doi: 10.1016/j.neuroscience.2013.02.002. Epub 2013 Feb 10.

Abstract

Corticokinematic coherence (CKC) refers to coupling between magnetoencephalographic (MEG) brain activity and hand kinematics. For voluntary hand movements, CKC originates mainly from the primary sensorimotor (SM1) cortex. To learn about the relative motor and sensory contributions to CKC, we recorded CKC from 15 healthy subjects during active and passive right index-finger movements. The fingertip was either touching or not touching table, resulting in active-touch, active-no-touch, passive-touch, and passive-no-touch conditions. The kinematics of the index-finger was measured with a 3-axis accelerometer. Beamformer analysis was used to locate brain activations for the movements; somatosensory-evoked fields (SEFs) elicited by pneumatic tactile stimulation of the index finger served as a functional landmark for cutaneous input. All active and passive movements resulted in statistically significant CKC at the movement frequency (F0) and its first harmonic (F1). The main CKC sources at F0 and F1 were in the contralateral SM1 cortex with no spatial differences between conditions, and distinct from the SEF sources. At F1, the coherence was by two thirds stronger for passive than active movements, with no difference between touch vs. no-touch conditions. Our results suggest that the CKC occurring during repetitive finger movements is mainly driven by somatosensory, primarily proprioceptive, afferent input to the SM1 cortex, with negligible effect of cutaneous input.

摘要

皮质运动相干性(CKC)是指脑磁图(MEG)脑活动与手部运动之间的耦合。对于自主的手部运动,CKC 主要来源于初级运动感觉(SM1)皮质。为了了解 CKC 与运动和感觉的相对贡献,我们在 15 名健康受试者进行主动和被动右食指运动时记录了 CKC。指尖要么接触要么不接触桌面,从而产生主动触摸、主动无触摸、被动触摸和被动无触摸条件。使用三轴加速度计测量食指的运动学。波束形成分析用于定位运动的大脑激活;用气动触觉刺激食指引起的体感诱发电位(SEF)作为皮肤输入的功能标记。所有主动和被动运动在运动频率(F0)及其第一谐波(F1)处产生具有统计学意义的 CKC。F0 和 F1 处的主要 CKC 源位于对侧 SM1 皮质,条件之间没有空间差异,与 SEF 源不同。在 F1 处,被动运动比主动运动的相干性强三分之二,触摸与无触摸条件之间没有差异。我们的结果表明,在重复手指运动过程中发生的 CKC 主要由 SM1 皮质的躯体感觉输入驱动,主要是本体感觉输入,皮肤输入的影响可以忽略不计。

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