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伪线性求和解释了人类运动前皮层中多手指运动的神经几何学。

Pseudo-linear summation explains neural geometry of multi-finger movements in human premotor cortex.

作者信息

Shah Nishal P, Avansino Donald, Kamdar Foram, Nicolas Claire, Kapitonava Anastasia, Vargas-Irwin Carlos, Hochberg Leigh R, Pandarinath Chethan, Shenoy Krishna V, Willett Francis R, Henderson Jaimie M

机构信息

Department of Neurosurgery, Stanford University, Stanford, CA, USA.

Department of Electrical and Computer Engineering, Rice University, Houston, TX, USA.

出版信息

Nat Commun. 2025 May 30;16(1):5008. doi: 10.1038/s41467-025-59039-z.

Abstract

How does the motor cortex combine simple movements (such as single finger flexion/extension) into complex movements (such as hand gestures, or playing the piano)? To address this question, motor cortical activity was recorded using intracortical multi-electrode arrays in two male people with tetraplegia as they attempted single, pairwise and higher-order finger movements. Neural activity for simultaneous movements was largely aligned with linear summation of corresponding single finger movement activities, with two violations. First, the neural activity exhibited normalization, preventing a large magnitude with an increasing number of moving fingers. Second, the neural tuning direction of weakly represented fingers changed significantly as a result of the movement of more strongly represented fingers. These deviations from linearity resulted in non-linear methods outperforming linear methods for neural decoding. Simultaneous finger movements are thus represented by the combination of individual finger movements by pseudo-linear summation.

摘要

运动皮层是如何将简单运动(如单个手指的屈伸)组合成复杂运动(如手势或弹钢琴)的?为了解决这个问题,研究人员使用皮层内多电极阵列记录了两名男性四肢瘫痪患者在尝试进行单个、成对和高阶手指运动时的运动皮层活动。同时运动的神经活动在很大程度上与相应单个手指运动活动的线性总和一致,但有两个例外。首先,神经活动表现出归一化,随着移动手指数量的增加,防止幅度过大。其次,由于更强烈代表的手指的运动,弱代表手指的神经调谐方向发生了显著变化。这些与线性的偏差导致非线性方法在神经解码方面优于线性方法。因此,同时进行的手指运动由单个手指运动通过伪线性总和的组合来表示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f5e3/12122912/6aea1789cc91/41467_2025_59039_Fig1_HTML.jpg

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