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Studies of cortical connectivity using optical circuit mapping methods

机译:使用光学电路映射方法研究皮质连通性

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摘要

An important consideration when probing the function of any neuron is to uncover the source of synaptic input onto the cell, its intrinsic physiology and efferent targets. Over the years, electrophysiological approaches have generated considerable insight into these properties in a variety of cortical neuronal subtypes and circuits. However, as researchers explore neuronal function in greater detail, they are increasingly turning to optical techniques to bridge the gap between local network interactions and behaviour. The application of optical methods has increased dramatically over the past decade, spurred on by the optogenetic revolution. In this review, we provide an account of recent innovations, providing researchers with a primer detailing circuit mapping strategies in the cerebral cortex. We will focus on technical aspects of performing neurotransmitter uncaging and channelrhodopsin‐assisted circuit mapping, with the aim of identifying common pitfalls that can negatively influence the collection of reliable data.
机译:探测任何神经元功能时的重要考虑因素是揭示突触输入到细胞的来源,其固有的生理机制和传出的靶标。多年以来,电生理方法已经在各种皮层神经元亚型和电路中对这些特性产生了深刻的了解。但是,随着研究人员更详细地探索神经元功能,他们越来越多地转向光学技术来弥合本地网络相互作用与行为之间的鸿沟。在光遗传学革命的推动下,光学方法的应用在过去十年中急剧增加。在这篇综述中,我们介绍了最近的创新,为研究人员提供了引物,详细介绍了大脑皮层中的电路映射策略。我们将专注于执行神经递质解开和通道视紫红质辅助的电路作图的技术方面,以识别可能对可靠数据的收集产生负面影响的常见陷阱。

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