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一种用于实时监测啮齿动物蓝斑活动的完整瞳孔测量工具箱。

A complete pupillometry toolbox for real-time monitoring of locus coeruleus activity in rodents.

作者信息

Privitera Mattia, Ferrari Kim David, von Ziegler Lukas M, Sturman Oliver, Duss Sian N, Floriou-Servou Amalia, Germain Pierre-Luc, Vermeiren Yannick, Wyss Matthias T, De Deyn Peter P, Weber Bruno, Bohacek Johannes

机构信息

Laboratory of Molecular and Behavioral Neuroscience, Institute for Neuroscience, Department of Health Sciences and Technology, ETH Zurich, Zurich, Switzerland.

Neuroscience Center Zurich, ETH Zurich and University of Zurich, Zurich, Switzerland.

出版信息

Nat Protoc. 2020 Aug;15(8):2301-2320. doi: 10.1038/s41596-020-0324-6. Epub 2020 Jul 6.

Abstract

The locus coeruleus (LC) is a region in the brainstem that produces noradrenaline and is involved in both normal and pathological brain function. Pupillometry, the measurement of pupil diameter, provides a powerful readout of LC activity in rodents, primates and humans. The protocol detailed here describes a miniaturized setup that can screen LC activity in rodents in real-time and can be established within 1-2 d. Using low-cost Raspberry Pi computers and cameras, the complete custom-built system costs only ~300 euros, is compatible with stereotaxic surgery frames and seamlessly integrates into complex experimental setups. Tools for pupil tracking and a user-friendly Pupillometry App allow quantification, analysis and visualization of pupil size. Pupillometry can discriminate between different, physiologically relevant firing patterns of the LC and can accurately report LC activation as measured by noradrenaline turnover. Pupillometry provides a rapid, non-invasive readout that can be used to verify accurate placement of electrodes/fibers in vivo, thus allowing decisions about the inclusion/exclusion of individual animals before experiments begin.

摘要

蓝斑(LC)是脑干中的一个区域,可产生去甲肾上腺素,并参与正常和病理性脑功能。瞳孔测量法,即测量瞳孔直径,能有力地反映啮齿动物、灵长类动物和人类的蓝斑活动。此处详细介绍的方案描述了一种小型化装置,该装置可实时筛选啮齿动物的蓝斑活动,且能在1 - 2天内搭建完成。使用低成本的树莓派计算机和摄像头,整套定制系统成本仅约300欧元,与立体定位手术框架兼容,并能无缝集成到复杂的实验装置中。瞳孔跟踪工具和用户友好的瞳孔测量应用程序可实现瞳孔大小的量化、分析和可视化。瞳孔测量法能够区分蓝斑不同的、生理相关的放电模式,并能准确报告通过去甲肾上腺素周转率测量的蓝斑激活情况。瞳孔测量法提供了一种快速、非侵入性的读数,可用于在体内验证电极/纤维的准确放置,从而在实验开始前决定个体动物的纳入/排除。

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