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利用食欲动机训练小鼠在巴恩斯迷宫中进行空间学习。

Using Appetitive Motivation to Train Mice for Spatial Learning in the Barnes Maze.

机构信息

Department of Pharmacology and Pharmacotherapy, Semmelweis University, Budapest, Hungary.

Doctoral School of Biology and Institute of Biology, Eötvös Loránd University, Budapest, Hungary.

出版信息

Biomed Res Int. 2023 Dec 19;2023:6625491. doi: 10.1155/2023/6625491. eCollection 2023.

Abstract

The Barnes maze, a well-known spatial-learning paradigm, is based on the innate fear of rodents of large open spaces and their drive to hide. However, additional aversive stimuli (strong light and threatening sounds) are often necessary to provoke the hiding response while rendering the method cumbersome and more stressful. Our objective was to establish a Barnes maze-learning paradigm in mice using palatable food as a reward. After habituating male C57BL6/J or NMRI mice to the reward, the experimenter and the apparatus, either a slow (2 trials/day) or a massive conditioning schedule (4 trials/day), was run. Acquisition training was carried out until mice could locate the reward box with a maximum of one hole error. Then, the box was replaced to another location (reversal phase). Mice needed to relearn the new position with the same criterion. One week later, retention trials were performed. Both strains could reach the learning criteria; in the massive training within a shorter period. Spatial memory was demonstrated in the reversal and retention trials. Our results show that palatable food can be used as an efficient motivator to acquire allocentric navigation in the Barnes maze with the additional advantage of being less stressful.

摘要

巴恩斯迷宫是一种著名的空间学习范式,它基于啮齿动物对大开阔空间的天生恐惧和它们的藏身本能。然而,为了引发藏身反应,通常需要额外的厌恶刺激(强光和威胁性声音),这使得该方法繁琐且压力更大。我们的目的是使用美味食物作为奖励,为小鼠建立巴恩斯迷宫学习范式。在使雄性 C57BL6/J 或 NMRI 小鼠习惯于奖励、实验者和仪器后,无论是采用缓慢(每天 2 次试验)还是大量条件作用方案(每天 4 次试验)进行实验。获取训练进行到小鼠最多可以有一个孔错误找到奖励箱为止。然后,将箱子更换到另一个位置(反转阶段)。小鼠需要用相同的标准重新学习新位置。一周后,进行保留试验。两种品系都可以达到学习标准;在大量训练中,所需时间更短。在反转和保留试验中都证明了空间记忆。我们的结果表明,美味食物可用作获取巴恩斯迷宫中以自我为中心的导航的有效激励因素,并且具有压力较小的额外优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09b4/10751176/02d8edb90a88/BMRI2023-6625491.001.jpg

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