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利用即早基因绘制海马亚区功能图谱。

Using immediate-early genes to map hippocampal subregional functions.

作者信息

Kubik Stepan, Miyashita Teiko, Guzowski John F

机构信息

Department of Neurobiology and Behavior Center for the Neurobiology of Learning and Memory, University of California, Irvine, California 92697-3800, USA.

出版信息

Learn Mem. 2007 Nov 14;14(11):758-70. doi: 10.1101/lm.698107. Print 2007 Nov.

DOI:10.1101/lm.698107
PMID:18007019
Abstract

Different functions have been suggested for the hippocampus and its subdivisions along both transversal and longitudinal axes. Expression of immediate-early genes (IEGs) has been used to map specific functions onto neuronal activity in different areas of the brain including the hippocampus (IEG imaging). Here we review IEG studies on hippocampal functional dissociations with a particular focus on the CA3 subregion. We first discuss the cellular functions of IEGs and the brain system interactions that govern their dynamic expression in hippocampal neurons to provide a more solid framework for interpreting the findings from IEG studies. We show the pitfalls and shortcomings of conventional IEG imaging studies and describe advanced methods using IEGs for imaging of neuronal activity or functional intervention. We review the current IEG evidence of hippocampal function, subregional-specific contribution to different stages of memory formation, systems consolidation, functional dissociation between memory and anxiety/behavioral inhibition along the septotemporal axis, and different neural network properties of hippocampal subregions. In total, IEG studies provide support for (1) the role of the hippocampus in spatial and contextual learning and memory, (2) its role in continuous encoding of ongoing experience, (3) septotemporal dissociations between memory and anxiety, and (4) a dynamic relationship between pattern separation and pattern completion in the CA3 subregion. In closing, we provide a framework for how cutting-edge IEG imaging and intervention techniques will likely contribute to better understanding of the specific functions of CA3 and other hippocampal subregions.

摘要

海马体及其沿横向和纵向轴的细分区域被认为具有不同的功能。即刻早期基因(IEGs)的表达已被用于将特定功能映射到包括海马体在内的大脑不同区域的神经元活动上(IEG成像)。在这里,我们回顾关于海马体功能分离的IEG研究,特别关注CA3亚区域。我们首先讨论IEGs的细胞功能以及控制它们在海马神经元中动态表达的脑系统相互作用,以便为解释IEG研究结果提供更坚实的框架。我们展示了传统IEG成像研究的陷阱和缺点,并描述了使用IEGs进行神经元活动成像或功能干预的先进方法。我们回顾了当前关于海马体功能的IEG证据、对记忆形成不同阶段的亚区域特异性贡献、系统巩固、沿颞叶-颞叶轴记忆与焦虑/行为抑制之间的功能分离,以及海马亚区域的不同神经网络特性。总的来说,IEG研究支持以下几点:(1)海马体在空间和情境学习与记忆中的作用;(2)其在持续经验的连续编码中的作用;(3)记忆与焦虑之间的颞叶-颞叶分离;以及(4)CA3亚区域中模式分离和模式完成之间的动态关系。最后,我们提供了一个框架,说明前沿的IEG成像和干预技术可能如何有助于更好地理解CA3和其他海马亚区域的特定功能。

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