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雌激素在平衡多种记忆系统贡献方面的作用。

Role of estrogen in balancing contributions from multiple memory systems.

作者信息

Korol Donna L

机构信息

Department of Psychology, Neuroscience Program, and Initiative on Aging, University of Illinois, 603 E. Daniel Street, Urbana-Champaign, IL, USA.

出版信息

Neurobiol Learn Mem. 2004 Nov;82(3):309-23. doi: 10.1016/j.nlm.2004.07.006.

Abstract

In addition to modulating memory per se, estrogen alters the learning strategy used to solve a task, thereby regulating the quality of information processed by the brain. This review discusses estrogen's actions on cognition within a memory systems framework, highlighting our work with a variety of paradigms showing that learning strategy is sensitive to estrogen even when learning rate is not. Specifically, high levels of gonadal steroids, in particular, elevations in estrogen, bias female rats toward using hippocampal-sensitive approaches while low levels of gonadal steroids promote the use of non-hippocampal sensitive strategies. In light of findings from a variety of approaches involving the hippocampus in allocentric and the striatum in egocentric response patterns, it is likely that estrogen alters the relative participation of these, and most undoubtedly other, neural systems during cognition. Changes in neuromodulators such as acetylcholine that regulate other processes such as inhibitory tone and excitability reflect one mechanism by which estrogen may orchestrate learning and memory.

摘要

除了调节记忆本身,雌激素还会改变用于解决任务的学习策略,从而调节大脑处理信息的质量。本综述在记忆系统框架内讨论雌激素对认知的作用,重点介绍我们在各种范式下的研究工作,这些研究表明,即使学习速率不受影响,学习策略也对雌激素敏感。具体而言,高水平的性腺类固醇,尤其是雌激素水平升高,会使雌性大鼠倾向于使用对海马体敏感的方法,而低水平的性腺类固醇则促进使用对海马体不敏感的策略。鉴于从涉及以空间为中心的海马体和以自我为中心的反应模式的纹状体的各种方法中获得的研究结果,雌激素很可能会改变这些以及其他大多数无疑的神经系统在认知过程中的相对参与程度。神经调节物质如乙酰胆碱的变化,它们调节诸如抑制性张力和兴奋性等其他过程,这反映了雌激素可能协调学习和记忆的一种机制。

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