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Diminishing Fear: Optogenetic Approach Toward Understanding Neural Circuits of Fear Control

机译:减少恐惧:光遗传学方法有助于理解恐惧控制的神经回路

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摘要

Understanding complex behavioral processes, both learned and innate, requires detailed characterization of the principles governing signal flow in corresponding neural circuits. Previous studies were hampered by the lack of appropriate tools needed to address the complexities of behavior-driving micro- and macrocircuits. The development and implementation of optogenetic methodologies revolutionized the field of behavioral neuroscience, allowing precise spatiotemporal control of specific, genetically defined neuronal populations and their functional connectivity both in vivo and ex vivo, thus providing unprecedented insights into the cellular and network-level mechanisms contributing to behavior. Here, we review recent pioneering advances in behavioral studies with optogenetic tools, focusing on mechanisms of fear-related behavioral processes with an emphasis on approaches which could be used to suppress fear when it is pathologically expressed. We also discuss limitations of these methodologies as well as review new technological developments which could be used in future mechanistic studies of fear behavior.
机译:要了解复杂的行为过程,无论是已习知的还是先天的,都需要对控制相应神经电路中信号流的原理进行详细表征。以前的研究因缺乏解决行为驱动微电路和宏电路的复杂性所需的适当工具而受阻。光遗传学方法的发展和实施彻底改变了行为神经科学领域,允许对特定的,遗传定义的神经元群体进行精确的时空控制,以及它们在体内和体外的功能连通性,从而为促成细胞和网络水平的机制提供了前所未有的见解。行为。在这里,我们回顾了使用光遗传学工具进行的行为研究的最新开创性进展,重点关注与恐惧相关的行为过程的机制,并着重于在病理表达时可用于抑制恐惧的方法。我们还将讨论这些方法的局限性,并回顾可用于未来恐惧行为机理研究的新技术发展。

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