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从学习中学习:视觉运动适应能告诉我们关于运动的神经元表征的哪些信息?

Learning from learning: what can visuomotor adaptations tell us about the neuronal representation of movement?

作者信息

Paz Rony, Vaadia Eilon

机构信息

Department of Neurobiology, Weizmann Institute of Science, Rehovot, Israel.

出版信息

Adv Exp Med Biol. 2009;629:221-42. doi: 10.1007/978-0-387-77064-2_11.

Abstract

The use of sensorimotor adaptation and learning paradigms in psychophyical and electrophysiological experiments can help to shed light on two fundamental questions. First, what are the computations that control sensorimotor behavior and, second, what are the neuronal mechanisms and representations underlying newly learned sensorimotor skills? We describe experiments that combined behavioral and electrophysioloigcal techniques and discuss implication of the results to three main questions: How do neuronal primitives of representation affect performance and learning? Do pre-motor and primary motor cortices form a hierarchy of computation, with different roles during learning and motor performance? How do these different cortical areas and the representations of movement change during the different stages of learning and memory formation?

摘要

在心理物理学和电生理实验中使用感觉运动适应和学习范式有助于阐明两个基本问题。第一,控制感觉运动行为的计算是什么?第二,新习得的感觉运动技能背后的神经元机制和表征是什么?我们描述了结合行为和电生理技术的实验,并讨论了结果对三个主要问题的启示:表征的神经元基元如何影响表现和学习?运动前区和初级运动皮层是否形成计算层次结构,在学习和运动表现过程中发挥不同作用?在学习和记忆形成的不同阶段,这些不同的皮层区域和运动表征如何变化?

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