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灵长类动物前运动皮质和初级运动皮质在感觉运动学习过程中定向运动调谐的动力学。

Dynamics of directional motor tuning in the primate premotor and primary motor cortices during sensorimotor learning.

机构信息

Department of Physiology, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.

Brain Functional Dynamics Collaboration Laboratory, RIKEN Center for Brain Science, Saitama, Japan.

出版信息

Nat Commun. 2024 Aug 20;15(1):7127. doi: 10.1038/s41467-024-51425-3.

Abstract

Sensorimotor learning requires reorganization of neuronal activity in the premotor cortex (PM) and primary motor cortex (M1). To reveal PM- and M1-specific reorganization in a primate, we conducted calcium imaging in common marmosets while they learned a two-target reaching (pull/push) task after mastering a one-target reaching (pull) task. Throughout learning of the two-target reaching task, the dorsorostral PM (PMdr) showed peak activity earlier than the dorsocaudal PM (PMdc) and M1. During learning, the reaction time in pull trials increased and correlated strongly with the peak timing of PMdr activity. PMdr showed decreasing representation of newly introduced (push) movement, whereas PMdc and M1 maintained high representation of pull and push movements. Many task-related neurons in PMdc and M1 exhibited a strong preference to either movement direction. PMdc neurons dynamically switched their preferred direction depending on their performance in push trials in the early learning stage, whereas M1 neurons stably retained their preferred direction and high similarity of preferred direction between neighbors. These results suggest that in primate sensorimotor learning, dynamic directional motor tuning in PMdc converts the sensorimotor association formed in PMdr to the stable and specific motor representation of M1.

摘要

感觉运动学习需要在前运动皮层(PM)和初级运动皮层(M1)中重新组织神经元活动。为了在灵长类动物中揭示 PM 和 M1 的特定重组,我们在普通狨猴中进行钙成像,当它们在掌握了一个目标到达(拉)任务后学习两个目标到达(拉/推)任务。在学习两个目标到达任务的过程中,背侧前 PM(PMdr)的峰值活动比背侧后 PM(PMdc)和 M1 更早。在学习过程中,拉试的反应时间增加,并与 PMdr 活动的峰值时间强相关。PMdr 对新引入的(推)运动的表现逐渐减少,而 PMdc 和 M1 则保持对拉和推运动的高表现。PMdc 和 M1 中的许多与任务相关的神经元对运动方向表现出强烈的偏好。PMdc 神经元根据其在早期学习阶段推试中的表现动态切换其偏好方向,而 M1 神经元则稳定保留其偏好方向和邻居之间偏好方向的高度相似性。这些结果表明,在灵长类动物的感觉运动学习中,PMdc 中的动态方向运动调整将在 PMdr 中形成的感觉运动关联转换为 M1 的稳定和特定的运动表现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4612/11336224/8c1cfa94e2f9/41467_2024_51425_Fig1_HTML.jpg

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