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伸手过程中γ频谱幅度和连通性的调制可预测峰值速度和运动持续时间。

Modulation of Gamma Spectral Amplitude and Connectivity During Reaching Predicts Peak Velocity and Movement Duration.

作者信息

Tatti Elisa, Ferraioli Francesca, Cacciola Alberto, Chan Cameron, Quartarone Angelo, Ghilardi Maria Felice

机构信息

Department of Molecular, Cellular and Biomedical Sciences, City University of New York (CUNY), School of Medicine, New York, NY, United States.

Department of Biomedical, Dental Sciences and Morphological and Functional Images, University of Messina, Messina, Italy.

出版信息

Front Neurosci. 2022 Feb 24;16:836703. doi: 10.3389/fnins.2022.836703. eCollection 2022.

Abstract

Modulation of gamma oscillations recorded from the human motor cortex and basal ganglia appears to play a key role in movement execution. However, there are still major questions to be answered about the specific role of cortical gamma activity in both the planning and execution of movement features such as the scaling of peak velocity and movement time. In this study, we characterized movement-related gamma oscillatory dynamics and its relationship with kinematic parameters based on 256-channels EEG recordings in 64 healthy subjects while performing fast and uncorrected reaching movements to targets located at three distances. In keeping with previous studies, we found that movement-related gamma synchronization occurred during movement execution. As a new finding, we showed that gamma synchronization occurred also before movement onset, with planning and execution phases involving different gamma peak frequencies and topographies. Importantly, the amplitude of gamma synchronization in both planning and execution increased with target distance and predicted peak velocity and movement time. Additional analysis of phase coherence revealed a gamma-coordinated long-range network involving occipital, frontal and central regions during movement execution that was positively related to kinematic features. This is the first evidence in humans supporting the notion that gamma synchronization amplitude and phase coherence pattern can reliably predict peak velocity amplitude and movement time. Therefore, these findings suggest that cortical gamma oscillations have a crucial role for the selection, implementation and control of the appropriate kinematic parameters of goal-directed reaching movements.

摘要

从人类运动皮层和基底神经节记录到的伽马振荡调制似乎在运动执行中起关键作用。然而,关于皮层伽马活动在运动特征(如峰值速度和运动时间的缩放)的规划和执行中的具体作用,仍有一些主要问题有待解答。在本研究中,我们基于64名健康受试者在对位于三个不同距离的目标进行快速且无校正的伸手动作时的256通道脑电图记录,对与运动相关的伽马振荡动力学及其与运动学参数的关系进行了表征。与先前的研究一致,我们发现在运动执行期间出现了与运动相关的伽马同步。作为一项新发现,我们表明在运动开始前也出现了伽马同步,规划和执行阶段涉及不同的伽马峰值频率和地形图。重要的是,规划和执行过程中伽马同步的幅度随着目标距离增加,并预测了峰值速度和运动时间。对相位相干性的进一步分析揭示了在运动执行期间一个涉及枕叶、额叶和中央区域的伽马协调远程网络,该网络与运动学特征呈正相关。这是在人类中首次支持伽马同步幅度和相位相干模式能够可靠预测峰值速度幅度和运动时间这一观点的证据。因此,这些发现表明皮层伽马振荡对于目标导向伸手动作的适当运动学参数的选择、实施和控制具有关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/927e/8908429/5feed3f7955b/fnins-16-836703-g001.jpg

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