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发育模式与可塑性:海马体模型

Developmental patterns and plasticities: the hippocampal model.

作者信息

Leinekugel Xavier

机构信息

INSERM EMI 0224 Cortex et Epilepsie, Faculté de Médecine Pitié-Salpêtrière, Université Paris 6, 105 Boulevard de l'Hôpital, 75013 Paris, France.

出版信息

J Physiol Paris. 2003 Jan;97(1):27-37. doi: 10.1016/j.jphysparis.2003.10.004.

Abstract

Because developmental activity-dependent synaptic plasticity has been hypothesized to participate in network refinement, leading to the precise mapping of synaptic contacts constituting a functional brain, it is important to investigate the spatio-temporal structure of immature network activities. This article is briefly reviewing 15 years of studies on the immature rat hippocampus which, together with recent results obtained from awake rat pups, represent an important step toward the understanding of spontaneous patterns of activity and their potential implication in network maturation. Due to synergistic excitatory actions of GABA and glutamate receptor mediated signals during early postnatal life, spontaneous patterns of hippocampal activity that have been characterized both in vitro and in vivo are likely to provide hebbian modulation of developing glutamatergic and GABAergic synapses. Together with studies on trophic actions of these transmitters, study of the immature hippocampal network patterns and plasticities allows for multiple technical and conceptual approaches and represents an interesting experimental model for development studies.

摘要

由于发育过程中依赖活动的突触可塑性被认为参与了神经网络的精细化,从而导致构成功能性大脑的突触联系的精确映射,因此研究未成熟网络活动的时空结构非常重要。本文简要回顾了对未成熟大鼠海马体进行的15年研究,这些研究以及从清醒幼鼠获得的最新结果,代表了在理解自发活动模式及其在网络成熟中的潜在意义方面迈出的重要一步。由于出生后早期生活中GABA和谷氨酸受体介导的信号具有协同兴奋性作用,因此在体外和体内都已表征的海马体活动的自发模式可能为发育中的谷氨酸能和GABA能突触提供赫布型调制。结合对这些递质营养作用的研究,对未成熟海马体网络模式和可塑性的研究允许多种技术和概念方法,并且代表了发育研究中一个有趣的实验模型。

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