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伸手过程中运动皮层的局部场电位频谱调谐

Local field potential spectral tuning in motor cortex during reaching.

作者信息

Heldman Dustin A, Wang Wei, Chan Sherwin S, Moran Daniel W

机构信息

Department of Biomedical Engineering, Washington University, St. Louis, MO 63130, USA.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2006 Jun;14(2):180-3. doi: 10.1109/TNSRE.2006.875549.

Abstract

In this paper, intracortical local field potentials (LFPs) and single units were recorded from the motor cortices of monkeys (Macaca fascicularis) while they preformed a standard three-dimensional (3-D) center-out reaching task. During the center-out task, the subjects held their hands at the location of a central target and then reached to one of eight peripheral targets forming the corners of a virtual cube. The spectral amplitudes of the recorded LFPs were calculated, with the high-frequency LFP (HF-LFP) defined as the average spectral amplitude change from baseline from 60 to 200 Hz. A 3-D linear regression across the eight center-out targets revealed that approximately 6% of the beta LFPs (18-26 Hz) and 18% of the HF-LFPs were tuned for velocity (p-value < 0.05), while 10% of the beta LFPs and 15% of the HF-LFPs were tuned for position. These results suggest that a multidegree-of-freedom brain-machine interface is possible using high-frequency LFP recordings in motor cortex.

摘要

在本文中,当猴子(食蟹猴)执行标准的三维(3-D)中心外伸展任务时,记录了其运动皮层的皮质内局部场电位(LFP)和单个神经元。在中心外任务期间,受试者将手放在中央目标的位置,然后伸向形成虚拟立方体角的八个周边目标之一。计算记录的LFP的频谱幅度,高频LFP(HF-LFP)定义为从基线到60至200Hz的平均频谱幅度变化。对八个中心外目标进行的三维线性回归显示,约6%的β-LFP(18-26Hz)和18%的HF-LFP对速度进行了调谐(p值<0.05),而10%的β-LFP和15%的HF-LFP对位置进行了调谐。这些结果表明,使用运动皮层中的高频LFP记录实现多自由度脑机接口是可能的。

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