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自由活动大鼠伏隔核神经活动的显微成像:病毒注射、梯度折射率透镜植入、记录策略及分析方法

Miniscope Imaging of Nucleus Accumbens Neural Activity in Freely Behaving Rats: Virus Injection, Gradient Index Lens Implantation, Recording Strategies, and Analytical Methods.

作者信息

Beacher Nicholas J, Wang Michael W, Broomer Matthew C, Kuo Jessica Y, Washington Kayden A, Targum Miranda, Zhang Yan, Barbera Giovanni, Lin Da-Ting

机构信息

Intramural Research Program, National Institute on Drug Abuse, Baltimore, Maryland.

University of California Davis Health, School of Medicine, Department of Neurology, Alzheimer's Disease Research Center-East Bay, Walnut Creek, California.

出版信息

Curr Protoc. 2025 Jan;5(1):e70090. doi: 10.1002/cpz1.70090.

Abstract

In vivo calcium imaging in freely moving rats using miniscopes provides valuable information about the neural mechanisms of behavior in real time. A gradient index (GRIN) lens can be implanted in deep brain structures to relay activity from single neurons. While such procedures have been successful in mice, few reports provide detailed procedures for successful surgery and long-term imaging in rats, which are better suited for studying complex human behaviors. We present a robotic surgical protocol for same-day virus injection and GRIN lens implantation into the rat nucleus accumbens core. Our procedure utilizes a direct lens insertion without tissue aspiration and produces quality image retention for months of recording. We also describe daily recording strategies to minimize damage and promote long-term imaging. Finally, we present custom protective strategies to eliminate the need to remove miniscopes between sessions. This methodology protects rats from repeated isoflurane exposure and ensures a consistent focal plane for the entirety of the experiment. © 2025 The Author(s). Current Protocols published by Wiley Periodicals LLC. Basic Protocol 1: Craniotomy Basic Protocol 2: Virus injection Basic Protocol 3: GRIN lens implantation Basic Protocol 4: Baseplate mounting and assessment of the anesthetized rat Basic Protocol 5: Assessment of the awake, behaving rat Support Protocol 1: Protective miniscope cone fabrication Support Protocol 2: Miniscope cable fabrication.

摘要

使用微型显微镜对自由活动的大鼠进行体内钙成像可实时提供有关行为神经机制的宝贵信息。梯度折射率(GRIN)透镜可植入深部脑结构以传递单个神经元的活动。虽然此类操作在小鼠中已获成功,但很少有报告提供在大鼠中成功手术及长期成像的详细步骤,而大鼠更适合用于研究复杂的人类行为。我们提出了一种机器人手术方案,用于在同一天将病毒注射到大鼠伏隔核核心并植入GRIN透镜。我们的操作采用直接插入透镜而不进行组织抽吸,并能在数月的记录中保持高质量的图像。我们还描述了日常记录策略,以尽量减少损伤并促进长期成像。最后,我们提出了定制的保护策略,无需在各次实验之间取出微型显微镜。这种方法可保护大鼠免受反复的异氟烷暴露,并确保在整个实验过程中焦平面保持一致。© 2025作者。由Wiley Periodicals LLC出版的《当前协议》。基本方案1:开颅手术 基本方案2:病毒注射 基本方案3:GRIN透镜植入 基本方案4:底板安装及对麻醉大鼠的评估 基本方案5:对清醒、行为状态下大鼠的评估 支持方案1:保护性微型显微镜锥体制作 支持方案2:微型显微镜电缆制作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f198/11718238/c939700df6f3/CPZ1-5-0-g001.jpg

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