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生态习性评估箱(Eco-HAB)作为一种对自闭症小鼠模型社交障碍进行全自动且与生态相关的评估方法。

Eco-HAB as a fully automated and ecologically relevant assessment of social impairments in mouse models of autism.

作者信息

Puścian Alicja, Łęski Szymon, Kasprowicz Grzegorz, Winiarski Maciej, Borowska Joanna, Nikolaev Tomasz, Boguszewski Paweł M, Lipp Hans-Peter, Knapska Ewelina

机构信息

Department of Neurophysiology, Nencki Institute of Experimental Biology of Polish Academy of Sciences, Warsaw, Poland.

Center for Theoretical Physics, Polish Academy of Sciences, Warsaw, Poland.

出版信息

Elife. 2016 Oct 12;5:e19532. doi: 10.7554/eLife.19532.

Abstract

Eco-HAB is an open source, RFID-based system for automated measurement and analysis of social preference and in-cohort sociability in mice. The system closely follows murine ethology. It requires no contact between a human experimenter and tested animals, overcoming the confounding factors that lead to irreproducible assessment of murine social behavior between laboratories. In Eco-HAB, group-housed animals live in a spacious, four-compartment apparatus with shadowed areas and narrow tunnels, resembling natural burrows. Eco-HAB allows for assessment of the tendency of mice to voluntarily spend time together in ethologically relevant mouse group sizes. Custom-made software for automated tracking, data extraction, and analysis enables quick evaluation of social impairments. The developed protocols and standardized behavioral measures demonstrate high replicability. Unlike classic three-chambered sociability tests, Eco-HAB provides measurements of spontaneous, ecologically relevant social behaviors in group-housed animals. Results are obtained faster, with less manpower, and without confounding factors.

摘要

Eco-HAB是一个基于射频识别(RFID)的开源系统,用于自动测量和分析小鼠的社会偏好及同组社交能力。该系统严格遵循小鼠行为学。它无需人类实验者与受试动物接触,克服了导致不同实验室对小鼠社会行为评估不可重复的混杂因素。在Eco-HAB中,群居动物生活在一个宽敞的四隔间装置中,有阴影区域和狭窄通道,类似天然洞穴。Eco-HAB能够评估小鼠在符合行为学的小鼠群体规模下自愿共度时间的倾向。用于自动跟踪、数据提取和分析的定制软件可快速评估社交障碍。所制定的方案和标准化行为测量方法具有很高的可重复性。与经典的三室社交测试不同,Eco-HAB可测量群居动物自发的、与生态相关的社会行为。获得结果的速度更快,所需人力更少,且没有混杂因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d489/5092044/9614b4215d7e/elife-19532-fig1.jpg

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