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一种全自动家庭笼,用于长期连续表型分析小鼠认知和行为。

A fully automated home cage for long-term continuous phenotyping of mouse cognition and behavior.

机构信息

Department of Physiology, Development and Neuroscience, University of Cambridge, Cambridge, UK.

Laboratory for Proteolytic Neuroscience, RIKEN Brain Science Institute, Wako, Japan.

出版信息

Cell Rep Methods. 2023 Jul 13;3(7):100532. doi: 10.1016/j.crmeth.2023.100532. eCollection 2023 Jul 24.

Abstract

Automated home-cage monitoring systems present a valuable tool for comprehensive phenotyping of natural behaviors. However, current systems often involve complex training routines, water or food restriction, and probe a limited range of behaviors. Here, we present a fully automated home-cage monitoring system for cognitive and behavioral phenotyping in mice. The system incorporates T-maze alternation, novel object recognition, and object-in-place recognition tests combined with monitoring of locomotion, drinking, and quiescence patterns, all carried out over long periods. Mice learn the tasks rapidly without any need for water or food restrictions. Behavioral characterization employs a deep convolutional neural network image analysis. We show that combined statistical properties of multiple behaviors can be used to discriminate between mice with hippocampal, medial entorhinal, and sham lesions and predict the genotype of an Alzheimer's disease mouse model with high accuracy. This technology may enable large-scale behavioral screening for genes and neural circuits underlying spatial memory and other cognitive processes.

摘要

自动化家庭笼监测系统为全面表型自然行为提供了有价值的工具。然而,当前的系统通常涉及复杂的训练程序、水或食物限制,并且只能探测有限的行为范围。在这里,我们提出了一种用于小鼠认知和行为表型分析的全自动家庭笼监测系统。该系统结合了 T 迷宫交替、新物体识别和物体位置识别测试,同时监测运动、饮水和静止模式,所有这些都可以长时间进行。小鼠可以快速学习任务,无需进行水或食物限制。行为特征分析采用深度卷积神经网络图像分析。我们表明,多个行为的综合统计特性可用于区分海马、内侧隔核和假手术损伤的小鼠,并以高精度预测阿尔茨海默病小鼠模型的基因型。这项技术可能使大规模的行为筛选成为可能,以研究空间记忆和其他认知过程背后的基因和神经回路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4fc9/10391580/f9730af44b40/fx1.jpg

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