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认知过程中乙酰胆碱细胞外水平的变化。

Changes in acetylcholine extracellular levels during cognitive processes.

作者信息

Pepeu Giancarlo, Giovannini Maria Grazia

机构信息

Department of Pharmacology, University of Florence, 50139 Florence, Italy.

出版信息

Learn Mem. 2004 Jan-Feb;11(1):21-7. doi: 10.1101/lm.68104.

Abstract

Measuring the changes in neurotransmitter extracellular levels in discrete brain areas is considered a tool for identifying the neuronal systems involved in specific behavioral responses or cognitive processes. Acetylcholine (ACh) is the first neurotransmitter whose diffusion from the central nervous system was investigated and whose extracellular levels variations were correlated to changes in neuronal activity. This was done initially by means of the cup technique and then by the microdialysis technique. The latter, notwithstanding some technical limitations, makes it possible to detect variations in extracellular levels of ACh in unrestrained, behaving animals. This review summarizes and discusses the results obtained investigating the changes in ACh release during performance of operant tasks, exposition to novel stimuli, locomotor activity, and the performance of spatial memory tasks, working memory, and place preference memory tasks. Activation of the forebrain cholinergic system has been demonstrated in many tasks and conditions in which the environment requires the animal to analyze novel stimuli that may represent a threat or offer a reward. The sustained cholinergic activation, demonstrated by high levels of extracellular ACh observed during the behavioral paradigms, indicates that many behaviors occur within or require the facilitation provided by the cholinergic system to the operation of pertinent neuronal pathways.

摘要

测量离散脑区神经递质细胞外水平的变化被视为一种用于识别参与特定行为反应或认知过程的神经元系统的工具。乙酰胆碱(ACh)是首个其从中枢神经系统扩散情况被研究且其细胞外水平变化与神经元活动变化相关的神经递质。这最初是通过杯状技术完成的,之后则是通过微透析技术。尽管微透析技术存在一些技术限制,但它能够检测未受束缚的行为动物体内ACh细胞外水平的变化。本综述总结并讨论了在操作任务执行、暴露于新刺激、运动活动以及空间记忆任务、工作记忆和位置偏好记忆任务执行过程中研究ACh释放变化所获得的结果。在前脑胆碱能系统在许多任务和条件下已被证明存在激活情况,在这些任务和条件中,环境要求动物分析可能代表威胁或提供奖励的新刺激。行为范式期间观察到的高水平细胞外ACh所证明的持续胆碱能激活表明,许多行为发生在胆碱能系统所提供的促进作用范围内或需要这种促进作用来推动相关神经元通路的运作。

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