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皮质可塑性:从突触到图谱。

Cortical plasticity: from synapses to maps.

作者信息

Buonomano D V, Merzenich M M

机构信息

Department of Neurobiology, University of California Los Angeles 90095-1763, USA.

出版信息

Annu Rev Neurosci. 1998;21:149-86. doi: 10.1146/annurev.neuro.21.1.149.

Abstract

It has been clear for almost two decades that cortical representations in adult animals are not fixed entities, but rather, are dynamic and are continuously modified by experience. The cortex can preferentially allocate area to represent the particular peripheral input sources that are proportionally most used. Alterations in cortical representations appear to underlie learning tasks dependent on the use of the behaviorally important peripheral inputs that they represent. The rules governing this cortical representational plasticity following manipulations of inputs, including learning, are increasingly well understood. In parallel with developments in the field of cortical map plasticity, studies of synaptic plasticity have characterized specific elementary forms of plasticity, including associative long-term potentiation and long-term depression of excitatory postsynaptic potentials. Investigators have made many important strides toward understanding the molecular underpinnings of these fundamental plasticity processes and toward defining the learning rules that govern their induction. The fields of cortical synaptic plasticity and cortical map plasticity have been implicitly linked by the hypothesis that synaptic plasticity underlies cortical map reorganization. Recent experimental and theoretical work has provided increasingly stronger support for this hypothesis. The goal of the current paper is to review the fields of both synaptic and cortical map plasticity with an emphasis on the work that attempts to unite both fields. A second objective is to highlight the gaps in our understanding of synaptic and cellular mechanisms underlying cortical representational plasticity.

摘要

近二十年来已经明确,成年动物的皮质表征并非固定不变的实体,而是动态的,并会因经验而不断改变。皮质能够优先分配区域来表征比例上使用最多的特定外周输入源。皮质表征的改变似乎是依赖于其所表征行为上重要的外周输入使用情况的学习任务的基础。在包括学习在内的输入操作后,支配这种皮质表征可塑性的规则越来越为人所理解。与皮质图谱可塑性领域的发展并行,突触可塑性研究已经明确了可塑性的特定基本形式,包括兴奋性突触后电位的联合性长时程增强和长时程抑制。研究人员在理解这些基本可塑性过程的分子基础以及确定支配其诱导的学习规则方面取得了许多重要进展。皮质突触可塑性和皮质图谱可塑性领域通过突触可塑性是皮质图谱重组基础这一假设而隐含地联系在一起。最近的实验和理论工作为这一假设提供了越来越有力的支持。本文的目标是回顾突触可塑性和皮质图谱可塑性这两个领域,重点是试图将这两个领域结合起来的工作。第二个目标是突出我们在理解皮质表征可塑性背后的突触和细胞机制方面的差距。

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