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海马体到前额叶皮质突触的可塑性:在工作记忆和巩固中的双重作用。

Plasticity at hippocampal to prefrontal cortex synapses: dual roles in working memory and consolidation.

作者信息

Laroche S, Davis S, Jay T M

机构信息

Laboratoire de Neurobiologie de l'Apprentissage, de la Mémoire et de la Communication, CNRS UMR 8620, Université Paris-Sud, Orsay, France.

出版信息

Hippocampus. 2000;10(4):438-46. doi: 10.1002/1098-1063(2000)10:4<438::AID-HIPO10>3.0.CO;2-3.

Abstract

The involvement of the hippocampus and the prefrontal cortex in cognitive processes and particularly in learning and memory has been known for a long time. However, the specific role of the projection which connects these two structures has remained elusive. The existence of a direct monosynaptic pathway from the ventral CA1 region of the hippocampus and subiculum to specific areas of the prefrontal cortex provides a useful model for conceptualizing the functional operations of hippocampal-prefrontal cortex communication in learning and memory. It is known now that hippocampal to prefrontal cortex synapses are modifiable synapses and can express different forms of plasticity, including long-term potentiation, long-term depression, and depotentiation. Here we review these findings and focus on recent studies that start to relate synaptic plasticity in the hippocampo-prefrontal cortex pathway to two specific aspects of learning and memory, i.e., the consolidation of information and working memory. The available evidence suggests that functional interactions between the hippocampus and prefrontal cortex in cognition and memory are more complex than previously anticipated, with the possibility for bidirectional regulation of synaptic strength as a function of the specific demands of tasks.

摘要

海马体和前额叶皮质参与认知过程,尤其是学习和记忆,这一点早已为人所知。然而,连接这两个结构的投射的具体作用仍然难以捉摸。从海马体腹侧CA1区和下托到前额叶皮质特定区域存在直接单突触通路,这为理解海马体-前额叶皮质在学习和记忆中的功能运作提供了一个有用的模型。现在已知海马体到前额叶皮质的突触是可修饰的突触,能够表现出不同形式的可塑性,包括长时程增强、长时程抑制和去增强。在此,我们回顾这些发现,并聚焦于最近开始将海马体-前额叶皮质通路中的突触可塑性与学习和记忆的两个特定方面,即信息巩固和工作记忆联系起来的研究。现有证据表明,海马体和前额叶皮质在认知和记忆中的功能相互作用比之前预期的更为复杂,随着任务特定需求的变化,突触强度可能存在双向调节。

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