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首页> 外文期刊>Biological psychiatry >Controlling the elements: An optogenetic approach to understanding the neural circuits of fear
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Controlling the elements: An optogenetic approach to understanding the neural circuits of fear

机译:控制元素:了解恐惧神经回路的光遗传学方法

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Neural circuits underlie our ability to interact in the world and to learn adaptively from experience. Understanding neural circuits and how circuit structure gives rise to neural firing patterns or computations is fundamental to our understanding of human experience and behavior. Fear conditioning is a powerful model system in which to study neural circuits and information processing and relate them to learning and behavior. Until recently, technological limitations have made it difficult to study the causal role of specific circuit elements during fear conditioning. However, newly developed optogenetic tools allow researchers to manipulate individual circuit components such as anatomically or molecularly defined cell populations, with high temporal precision. Applying these tools to the study of fear conditioning to control specific neural subpopulations in the fear circuit will facilitate a causal analysis of the role of these circuit elements in fear learning and memory. By combining this approach with in vivo electrophysiological recordings in awake, behaving animals, it will also be possible to determine the functional contribution of specific cell populations to neural processing in the fear circuit. As a result, the application of optogenetics to fear conditioning could shed light on how specific circuit elements contribute to neural coding and to fear learning and memory. Furthermore, this approach may reveal general rules for how circuit structure and neural coding within circuits gives rise to sensory experience and behavior.
机译:神经回路是我们与世界互动和从经验中自适应学习的能力的基础。了解神经回路以及电路结构如何引起神经触发模式或计算是理解人类经验和行为的基础。恐惧调节是一个功能强大的模型系统,在其中可以研究神经回路和信息处理,并将它们与学习和行为相关联。直到最近,技术上的限制使人们很难研究恐惧调节过程中特定电路元件的因果作用。但是,新开发的光遗传学工具使研究人员能够以较高的时间精度来操纵单个电路组件,例如解剖或分子定义的细胞群体。将这些工具应用于恐惧条件研究以控制恐惧回路中的特定神经亚群将有助于对这些回路要素在恐惧学习和记忆中的作用进行因果分析。通过将这种方法与行为清醒的动物体内的电生理记录相结合,还可以确定特定细胞群对恐惧回路中神经处理的功能贡献。结果,光遗传学在恐惧调节中的应用可以揭示特定电路元件如何对神经编码以及恐惧学习和记忆产生影响。此外,这种方法可以揭示关于电路结构和电路内神经编码如何产生感官体验和行为的一般规则。

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