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热迷宫:一种用于读取与不动相关脑事件的行为范式。

ThermoMaze: A behavioral paradigm for readout of immobility-related brain events.

作者信息

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

机构信息

Neuroscience Institute and New York University, New York, NY 10016, USA.

Princeton Neuroscience Institute, Princeton University, Princeton, NJ 08544, USA.

出版信息

bioRxiv. 2024 May 15:2023.07.25.550518. doi: 10.1101/2023.07.25.550518.

Abstract

Brain states fluctuate between exploratory and consummatory phases of behavior. These state changes affect both internal computation and the organism's responses to sensory inputs. Understanding neuronal mechanisms supporting exploratory and consummatory states and their switching requires experimental control of behavioral shifts and collecting sufficient amounts of brain data. To achieve this goal, we developed the ThermoMaze, which exploits the animal's natural warmth-seeking homeostatic behavior. By decreasing the floor temperature and selectively heating unmarked areas, mice avoid the aversive state by exploring the maze and finding the warm spot. In its design, the ThermoMaze is analogous to the widely used water maze but without the inconvenience of a wet environment and, therefore, allows the collection of physiological data in many trials. We combined the ThermoMaze with electrophysiology recording, and report that spiking activity of hippocampal CA1 neurons during sharp-wave ripple events encode the position of the animal. Thus, place-specific firing is not confined to locomotion and associated theta oscillations but persist during waking immobility and sleep at the same location. The ThermoMaze will allow for detailed studies of brain correlates of immobility, preparatory-consummatory transitions and open new options for studying behavior-mediated temperature homeostasis.

摘要

大脑状态在行为的探索阶段和消耗阶段之间波动。这些状态变化既影响内部计算,也影响生物体对感觉输入的反应。要理解支持探索和消耗状态及其转换的神经元机制,需要对行为转变进行实验控制并收集足够量的大脑数据。为实现这一目标,我们开发了热迷宫,它利用了动物寻求温暖的自然稳态行为。通过降低地板温度并选择性地加热无标记区域,小鼠通过探索迷宫并找到温暖区域来避免厌恶状态。在设计上,热迷宫类似于广泛使用的水迷宫,但没有潮湿环境带来的不便,因此能够在多次试验中收集生理数据。我们将热迷宫与电生理记录相结合,并报告海马CA1神经元在尖波涟漪事件期间的放电活动编码了动物的位置。因此,位置特异性放电并不局限于运动及相关的θ振荡,而是在清醒静止状态和睡眠期间于同一位置持续存在。热迷宫将有助于对静止状态、准备 - 消耗转换的大脑关联进行详细研究,并为研究行为介导的温度稳态开辟新的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f8d/11105918/8787708de4f2/nihpp-2023.07.25.550518v2-f0001.jpg

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