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灵长类动物前额叶皮层的可塑性。

Plasticity of the primate prefrontal cortex.

作者信息

Kuboshima-Amemori Satoko, Sawaguchi Toshiyuki

机构信息

Laboratory of Cognitive Neurobiology, Hokkaido University Graduate School of Medicine, Sapporo, Japan.

出版信息

Neuroscientist. 2007 Jun;13(3):229-40. doi: 10.1177/1073858406298554.

Abstract

Cortical plasticity refers to flexible and long-lasting changes in neuronal circuitry and information processing, which is caused by learning and experience. Although cortical plasticity can be observed in every cortex of the brain, the plasticity of the prefrontal cortex (PFC) is particularly important because the PFC is involved in various cognitive functions, and its plasticity could lead to adaptive changes in the use of other brain regions. Cortical plasticity occurs at several levels, from functional molecules to the organization of large areas of the brain. Here, the authors focus mainly on the development and remodeling of the functional and structural organization of the primate PFC. They discuss how the columnar modules of the PFC develop in the immature brain, how these modules form a "cognitive field" that is responsible for a specific cognitive function, how the cognitive field could be reorganized by training in the mature brain, and how monoaminergic systems contribute to these various levels of plasticity. They suggest that monoaminergic systems, especially the dopaminergic system, are involved in various levels of cortical plasticity, such as behavioral learning and learning-dependent cortical remodeling, thereby contributing to the reorganization of the cognitive field in the primate PFC.

摘要

皮质可塑性是指神经元回路和信息处理中由学习和经验引起的灵活且持久的变化。虽然在大脑的每个皮质中都能观察到皮质可塑性,但前额叶皮质(PFC)的可塑性尤为重要,因为PFC参与多种认知功能,其可塑性可能导致其他脑区使用方式的适应性变化。皮质可塑性发生在从功能分子到大脑大面积组织的多个层面。在此,作者主要关注灵长类动物PFC功能和结构组织的发育与重塑。他们讨论了PFC的柱状模块在未成熟大脑中如何发育,这些模块如何形成负责特定认知功能的“认知场”,成熟大脑中的训练如何重组认知场,以及单胺能系统如何在这些不同层面的可塑性中发挥作用。他们指出,单胺能系统,尤其是多巴胺能系统,参与了皮质可塑性的多个层面,如行为学习和依赖学习的皮质重塑,从而有助于灵长类动物PFC中认知场的重组。

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