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Slow cortical rhythms: from single-neuron electrophysiology to whole-brain imaging in vivo

机译:缓慢的皮质节律:从单神经元电生理到体内全脑成像

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The slow cortical oscillation is the major brain rhythm occurring during sleep, and has been the object of thorough investigation for over thirty years. Despite all these efforts, the function and the neuronal mechanisms behind slow cortical rhythms remain only partially understood. In this review we will provide an overview of the techniques available for the in vivo study of slow cortical oscillations in animal models. Our goal is to provide an up to date resource for the selection of the best experimental strategies to study specific aspects of slow oscillations. We will cover both traditional, population-level electrophysiological approaches (EEG, local field potentials) as well as more recent techniques, such as two photon calcium imaging and optogenetics. Overall, we believe that new breakthrough in our understanding of slow cortical rhythms will require the integration of different techniques, to bridge the gap between different spatio-temporal scales and go from a correlative to a causal level of analysis.
机译:缓慢的皮层振荡是睡眠中主要的大脑节律,并且已经成为三十多年来彻底研究的对象。尽管做出了所有这些努力,但缓慢的皮质节律背后的功能和神经元机制仍然只有部分了解。在这篇综述中,我们将概述可用于动物模型中慢皮质振荡的体内研究的技术。我们的目标是为选择最佳的实验策略提供最新资源,以研究慢振荡的特定方面。我们将介绍传统的人口级电生理方法(EEG,局部场电势)以及最新技术,例如两次光子钙成像和光遗传学。总的来说,我们认为,对慢速皮质节律的理解要取得新突破,就需要整合各种技术,以弥合不同时空尺度之间的鸿沟,并从相关分析转变为因果分析。

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