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猕猴运动前区皮层中触及与抓握信息的交互整合

Interactively Integrating Reach and Grasp Information in Macaque Premotor Cortex.

作者信息

Chen Junjun, Sun Guanghao, Zhang Yiwei, Chen Weidong, Zheng Xiaoxiang, Zhang Shaomin, Hao Yaoyao

机构信息

Qiushi Academy for Advanced Studies, Zhejiang University, Hangzhou, 310027, China.

School of Rehabilitation Sciences and Engineering, University of Health and Rehabilitation Sciences, Qingdao, 266114, China.

出版信息

Neurosci Bull. 2025 Jun 21. doi: 10.1007/s12264-025-01430-3.

Abstract

Reach-to-grasp movements require integrating information on both object location and grip type, but how these elements are planned and to what extent they interact remains unclear. We designed a new experimental paradigm in which monkeys sequentially received reach and grasp cues with delays, requiring them to retain and integrate both cues to grasp the goal object with appropriate hand gestures. Neural activity in the dorsal premotor cortex (PMd) revealed that reach and grasp were similarly represented yet not independent. Upon receiving the second cue, the PMd continued encoding the first, but over half of the neurons displayed incongruent modulations: enhanced, attenuated, or even reversed. Population-level analysis showed significant changes in encoding structure, forming distinct neural patterns. Leveraging canonical correlation analysis, we identified a shared subspace preserving the initial cue's encoding, contributed by both congruent and incongruent neurons. Together, these findings reveal a novel perspective on the interactive planning of reach and grasp within the PMd, providing insights into potential applications for brain-machine interfaces.

摘要

伸手抓握动作需要整合关于物体位置和抓握类型的信息,但这些元素是如何规划的以及它们相互作用的程度仍不清楚。我们设计了一种新的实验范式,让猴子依次接受带有延迟的伸手和抓握提示,要求它们保留并整合这两个提示,以便用适当的手势抓住目标物体。背侧运动前皮层(PMd)的神经活动表明,伸手和抓握的表征相似但并非相互独立。在收到第二个提示后,PMd继续对第一个提示进行编码,但超过一半的神经元表现出不一致的调制:增强、减弱甚至反转。群体水平分析显示编码结构有显著变化,形成了不同的神经模式。利用典型相关分析,我们确定了一个共享子空间,它保留了初始提示的编码,由一致和不一致的神经元共同贡献。总之,这些发现揭示了PMd内伸手和抓握交互规划的新视角,为脑机接口的潜在应用提供了见解。

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