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热迷宫的构建。

Construction of ThermoMaze.

作者信息

Rothstein Aryeh, Vöröslakos Mihály, Zhang Yunchang, McClain Kathryn, Huszár Roman, Buzsáki György

机构信息

Neuroscience Institute, School of Medicine, New York University, New York, NY, USA.

Department of Neurology, School of Medicine, New York University, New York, NY, USA.

出版信息

Bio Protoc. 2024 Aug 5;14(15):e5044. doi: 10.21769/BioProtoc.5044.

Abstract

Physiological changes during awake immobility-related brain states remain one of the great unexplored behavioral states. Controlling periods of awake immobility is challenging because restraining the animal is stressful and is accompanied by altered physiological states. Here, we describe the ThermoMaze, a behavioral paradigm that allows for the collection of large amounts of physiological data while the animal rests at distinct experimenter-determined locations. We found that the paradigm generated long periods of immobility and did not alter the brain temperature. We combined the ThermoMaze with electrophysiology recordings in the CA1 region of the hippocampus and found a location-specific distribution of sharp-wave ripple events. We describe the construction of the ThermoMaze with the intention that it helps enable large-scale data recordings on immobility-related brain states. Key features • Controlling periods of awake immobility in rodents. • Electronic-friendly analog of the Morris water maze.

摘要

清醒静止相关脑状态下的生理变化仍然是未被充分探索的行为状态之一。控制清醒静止期具有挑战性,因为束缚动物会造成压力,并伴随着生理状态的改变。在此,我们描述了热迷宫,这是一种行为范式,可在动物于实验者确定的不同位置休息时收集大量生理数据。我们发现该范式能产生长时间的静止状态,且不会改变脑温。我们将热迷宫与海马体CA1区的电生理记录相结合,发现了尖波涟漪事件的位置特异性分布。我们描述了热迷宫的构建,旨在帮助实现与静止相关脑状态的大规模数据记录。关键特性 • 控制啮齿动物的清醒静止期。 • 莫里斯水迷宫的电子友好型类似物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bdc6/11309959/e6e28de02c51/BioProtoc-14-15-5044-g001.jpg

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