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首页> 外文期刊>Nature neuroscience >Functional imaging of hippocampal place cells at cellular resolution during virtual navigation.
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Functional imaging of hippocampal place cells at cellular resolution during virtual navigation.

机译:在虚拟导航过程中以细胞分辨率对海马放置细胞进行功能成像。

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摘要

Spatial navigation is often used as a behavioral task in studies of the neuronal circuits that underlie cognition, learning and memory in rodents. The combination of in vivo microscopy with genetically encoded indicators has provided an important new tool for studying neuronal circuits, but has been technically difficult to apply during navigation. Here we describe methods for imaging the activity of neurons in the CA1 region of the hippocampus with subcellular resolution in behaving mice. Neurons that expressed the genetically encoded calcium indicator GCaMP3 were imaged through a chronic hippocampal window. Head-restrained mice performed spatial behaviors in a setup combining a virtual reality system and a custom-built two-photon microscope. We optically identified populations of place cells and determined the correlation between the location of their place fields in the virtual environment and their anatomical location in the local circuit. The combination of virtual reality and high-resolution functional imaging should allow a new generation of studies to investigate neuronal circuit dynamics during behavior.
机译:在对啮齿动物的认知,学习和记忆基础的神经元回路的研究中,空间导航通常被用作行为任务。体内显微镜与遗传编码指示剂的结合为研究神经元回路提供了重要的新工具,但在导航过程中在技术上难以应用。在这里,我们描述了在行为小鼠中以亚细胞分辨率对海马CA1区神经元活动进行成像的方法。通过慢性海马窗口对表达遗传编码钙指示剂GCaMP3的神经元进行成像。头部受约束的小鼠在结合虚拟现实系统和定制的两光子显微镜的设置中执行了空间行为。我们用光学方法识别了位置细胞的种群,并确定了它们在虚拟环境中的位置场的位置与它们在局部电路中的解剖位置之间的相关性。虚拟现实和高分辨率功能成像的结合应允许进行新一代研究来研究行为期间的神经元回路动力学。

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