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作为体外培养的大脑皮质组织成熟过程中的因变量和自变量的自发性神经元爆发式放电:对用于内在产生的生物电慢波睡眠模式发育的活体“模型”系统中活动依赖性研究的综述

Spontaneous neuronal burst discharges as dependent and independent variables in the maturation of cerebral cortex tissue cultured in vitro: a review of activity-dependent studies in live 'model' systems for the development of intrinsically generated bioelectric slow-wave sleep patterns.

作者信息

Corner Michael A

机构信息

Netherlands Institute for Brain Research, Amsterdam, The Netherlands.

出版信息

Brain Res Rev. 2008 Nov;59(1):221-44. doi: 10.1016/j.brainresrev.2008.08.001. Epub 2008 Aug 8.

Abstract

A survey is presented of recent experiments which utilize spontaneous neuronal spike trains as dependent and/or independent variables in developing cerebral cortex cultures when synaptic transmission is interfered with for varying periods of time. Special attention is given to current difficulties in selecting suitable preparations for carrying out biologically relevant developmental studies, and in applying spike-train analysis methods with sufficient resolution to detect activity-dependent age and treatment effects. A hierarchy of synchronized nested burst discharges which approximate early slow-wave sleep patterns in the intact organism is established as a stable basis for isolated cortex function. The complexity of reported long- and short-term homeostatic responses to experimental interference with synaptic transmission is reviewed, and the crucial role played by intrinsically generated bioelectric activity in the maturation of cortical networks is emphasized.

摘要

本文综述了近期的实验,这些实验在发育中的大脑皮层培养物中,当突触传递在不同时间段受到干扰时,将自发神经元放电序列用作因变量和/或自变量。特别关注了在选择合适的实验制剂以进行具有生物学相关性的发育研究,以及应用具有足够分辨率的放电序列分析方法来检测与活动相关的年龄和处理效应方面当前存在的困难。建立了一种同步嵌套爆发放电的层级结构,其近似于完整生物体中的早期慢波睡眠模式,作为孤立皮层功能的稳定基础。本文回顾了报道的对突触传递实验干扰的长期和短期稳态反应的复杂性,并强调了内在产生的生物电活动在皮层网络成熟中所起的关键作用。

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