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In vivo Labeling of Constellations of Functionally Identified Neurons for Targeted in vitro Recordings

机译:体内标记的功能鉴定神经元的星座为体外记录的目标。

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摘要

Relating the functional properties of neurons in an intact organism with their cellular and synaptic characteristics is necessary for a mechanistic understanding of brain function. However, while the functional properties of cortical neurons (e.g., tuning to sensory stimuli) are necessarily determined in vivo, detailed cellular and synaptic analysis relies on in vitro techniques. Here we describe an approach that combines in vivo calcium imaging (for functional characterization) with photo-activation of fluorescent proteins (for neuron labeling), thereby allowing targeted in vitro recording of multiple neurons with known functional properties. We expressed photo-activatable GFP rendered non-diffusible through fusion with a histone protein (H2B–PAGFP) in the mouse visual cortex to rapidly photo-label constellations of neurons in vivo at cellular and sub-cellular resolution using two-photon excitation. This photo-labeling method was compatible with two-photon calcium imaging of neuronal responses to visual stimuli, allowing us to label constellations of neurons with specific functional properties. Photo-labeled neurons were easily identified in vitro in acute brain slices and could be targeted for whole-cell recording. We also demonstrate that in vitro and in vivo image stacks of the same photo-labeled neurons could be registered to one another, allowing the exact in vivo response properties of individual neurons recorded in vitro to be known. The ability to perform in vitro recordings from neurons with known functional properties opens up exciting new possibilities for dissecting the cellular, synaptic, and circuit mechanisms that underlie neuronal function in vivo.
机译:为了完整地了解脑功能,必须将完整生物中神经元的功能特性与其细胞和突触特征联系起来。然而,尽管必须在体内确定皮层神经元的功能性质(例如,调节到感觉刺激),但是详细的细胞和突触分析依赖于体外技术。在这里,我们描述了一种将体内钙成像(用于功能表征)与荧光蛋白的光激活(用于神经元标记)相结合的方法,从而可以靶向体外记录具有已知功能特性的多个神经元。我们通过在小鼠视觉皮层中与组蛋白(H2B–PAGFP)融合来表达光激活的GFP,使其变得不可扩散,从而利用双光子激发在细胞和亚细胞分辨率下体内迅速对神经元的星座进行光标记。这种光标记方法与神经元对视觉刺激的反应的双光子钙成像兼容,从而使我们能够标记具有特定功能特性的神经元星座。光标记的神经元很容易在急性脑切片中进行体外鉴定,并可作为全细胞记录的靶标。我们还证明了相同的光标记神经元的体外和体内图像堆栈可以相互注册,从而使已知体外记录的单个神经元的确切体内反应特性成为可能。从具有已知功能特性的神经元进行体外录音的能力为剖析体内神经元功能的细胞,突触和电路机制开辟了令人兴奋的新可能性。

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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