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钙在小脑皮层突触可塑性和运动学习中的作用。

The role of calcium in synaptic plasticity and motor learning in the cerebellar cortex.

机构信息

School of Pharmacy and Division of Biomedical Sciences, Faculty of Medicine, Memorial University of Newfoundland, St. John's, NL, Canada.

出版信息

Neurosci Biobehav Rev. 2012 Apr;36(4):1153-62. doi: 10.1016/j.neubiorev.2012.01.005. Epub 2012 Jan 28.

Abstract

The cerebellum is important for motor coordination, as well as motor learning and memories. Learning is believed to occur in the cerebellar cortex, in the form of synaptic plasticity. Central to motor learning theory are Purkinje cells (PCs), which are the sole output neurons of the cerebellar cortex. Motor memories are postulated to be stored in the form of long-term depression (LTD) at parallel fiber synapses with PCs, once thought to be the only plastic synapse in the cerebellar cortex. However, in the past few decades many studies have demonstrated that several other synapses in the cerebellar cortex are indeed plastic, and that LTD or long-term potentiation at these various synapses could affect the overall output signal of PCs from the cerebellar cortex. Almost all of these forms of synaptic plasticity are dependent on calcium to some extent. In the current review we discuss various types of synaptic plasticity in the cerebellar cortex and the role of calcium in these forms of plasticity.

摘要

小脑对于运动协调以及运动学习和记忆非常重要。人们认为学习发生在小脑皮层,以突触可塑性的形式发生。运动学习理论的核心是浦肯野细胞(PC),它是小脑皮层的唯一输出神经元。运动记忆被假定以与 PC 的平行纤维突触的长时程抑制(LTD)的形式存储,曾一度被认为是小脑皮层中唯一可塑的突触。然而,在过去的几十年中,许多研究已经表明小脑皮层中的几个其他突触确实具有可塑性,并且这些各种突触中的 LTD 或长时程增强可以影响小脑皮层中 PC 的整体输出信号。几乎所有这些形式的突触可塑性在某种程度上都依赖于钙。在当前的综述中,我们讨论了小脑皮层中的各种类型的突触可塑性以及钙在这些形式的可塑性中的作用。

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