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回路稳态在成体神经发生中的作用。

A role for circuit homeostasis in adult neurogenesis.

作者信息

Meltzer Leslie A, Yabaluri Raghu, Deisseroth Karl

机构信息

Department of Bioengineering, Neuroscience Program, Stanford University, W083 Clark Center, 318 Campus Drive West, Stanford, CA 94305, USA.

出版信息

Trends Neurosci. 2005 Dec;28(12):653-60. doi: 10.1016/j.tins.2005.09.007. Epub 2005 Nov 3.

Abstract

Insertion of new neurons into adult neural circuits could either promote or impair circuit function, depending on whether homeostatic mechanisms are in place to regulate the resulting changes in neural activity. In the hippocampus (a mammalian forebrain structure important in aspects of memory and mood) several lines of behavioral evidence suggest important adaptive roles for adult-generated neurons, indicating that there could be mechanisms to control the potentially adverse increase in excitation associated with new cells. Here, we delineate behavioral and computational models for the role of circuit homeostasis in enabling neuron insertion to modulate hippocampal function adaptively, and we describe molecular and cellular mechanisms for implementing this circuit-level adaptive regulation of hippocampal activity.

摘要

将新神经元插入成年神经回路可能会促进或损害回路功能,这取决于体内平衡机制是否存在,以调节由此产生的神经活动变化。在海马体(哺乳动物前脑结构,在记忆和情绪方面很重要),多条行为证据表明成年产生的神经元具有重要的适应性作用,这表明可能存在控制与新细胞相关的潜在有害兴奋增加的机制。在这里,我们描绘了回路稳态在使神经元插入以适应性调节海马体功能中所起作用的行为和计算模型,并且我们描述了实现海马体活动这种回路水平适应性调节的分子和细胞机制。

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