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小脑皮层在条件性目标导向行为中的作用。

Role of the cerebellar cortex in conditioned goal-directed behavior.

机构信息

Navigation, Memory and Aging Team, UMR CNRS 7102, Universite Pierre et Marie Curie, F-75005, Paris, France.

出版信息

J Neurosci. 2010 Oct 6;30(40):13265-71. doi: 10.1523/JNEUROSCI.2190-10.2010.

Abstract

Learning a new goal-directed behavioral task often requires the improvement of at least two processes, including an enhanced stimulus-response association and an optimization of the execution of the motor response. The cerebellum has recently been shown to play a role in acquiring goal-directed behavior, but it is unclear to what extent it contributes to a change in the stimulus-response association and/or the optimization of the execution of the motor response. We therefore designed the stimulus-dependent water Y-maze conditioning task, which allows discrimination between both processes, and we subsequently subjected Purkinje cell-specific mutant mice to this new task. The mouse mutants L7-PKCi, which suffer from impaired PKC-dependent processes such as parallel fiber to Purkinje cell long-term depression (PF-PC LTD), were able to acquire the stimulus-response association, but exhibited a reduced optimization of their motor performance. These data show that PF-PC LTD is not required for learning a stimulus-response association, but they do suggest that a PKC-dependent process in cerebellar Purkinje cells is required for optimization of motor responses.

摘要

学习新的目标导向行为任务通常需要至少改进两个过程,包括增强刺激-反应关联和优化运动反应的执行。最近已经表明,小脑在获得目标导向行为方面发挥作用,但尚不清楚它在多大程度上有助于刺激-反应关联的变化和/或运动反应的优化。因此,我们设计了依赖刺激的水 Y 迷宫条件反射任务,该任务允许区分这两个过程,随后我们让浦肯野细胞特异性突变小鼠接受这个新任务。L7-PKCi 小鼠突变体,由于 PKC 依赖性过程受损,如平行纤维到浦肯野细胞长时程抑制(PF-PC LTD),能够获得刺激-反应关联,但表现出运动性能的优化减少。这些数据表明,PF-PC LTD 对于学习刺激-反应关联不是必需的,但它们确实表明小脑浦肯野细胞中的 PKC 依赖性过程对于运动反应的优化是必需的。

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