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一种用于大鼠标准化操作性认知测试的自动化、无需实验者的方法。

An Automated, Experimenter-Free Method for the Standardised, Operant Cognitive Testing of Rats.

作者信息

Rivalan Marion, Munawar Humaira, Fuchs Anna, Winter York

机构信息

Department of Biology, Humboldt University of Berlin, Berlin, Germany.

出版信息

PLoS One. 2017 Jan 6;12(1):e0169476. doi: 10.1371/journal.pone.0169476. eCollection 2017.

Abstract

Animal models of human pathology are essential for biomedical research. However, a recurring issue in the use of animal models is the poor reproducibility of behavioural and physiological findings within and between laboratories. The most critical factor influencing this issue remains the experimenter themselves. One solution is the use of procedures devoid of human intervention. We present a novel approach to experimenter-free testing cognitive abilities in rats, by combining undisturbed group housing with automated, standardized and individual operant testing. This experimenter-free system consisted of an automated-operant system (Bussey-Saksida rat touch screen) connected to a home cage containing group living rats via an automated animal sorter (PhenoSys). The automated animal sorter, which is based on radio-frequency identification (RFID) technology, functioned as a mechanical replacement of the experimenter. Rats learnt to regularly and individually enter the operant chamber and remained there for the duration of the experimental session only. Self-motivated rats acquired the complex touch screen task of trial-unique non-matching to location (TUNL) in half the time reported for animals that were manually placed into the operant chamber. Rat performance was similar between the two groups within our laboratory, and comparable to previously published results obtained elsewhere. This reproducibility, both within and between laboratories, confirms the validity of this approach. In addition, automation reduced daily experimental time by 80%, eliminated animal handling, and reduced equipment cost. This automated, experimenter-free setup is a promising tool of great potential for testing a large variety of functions with full automation in future studies.

摘要

人类病理学动物模型对生物医学研究至关重要。然而,动物模型使用中一个反复出现的问题是,实验室内部和之间行为及生理结果的可重复性较差。影响这一问题的最关键因素仍然是实验者本身。一种解决方案是使用无需人工干预的程序。我们提出了一种新颖的方法,通过将不受干扰的群居饲养与自动化、标准化和个体操作性测试相结合,对大鼠进行无实验者测试认知能力。这个无实验者系统由一个自动化操作设备(Bussey-Saksida大鼠触摸屏)组成,该设备通过一个自动动物分选器(PhenoSys)连接到一个装有群居大鼠的饲养笼。基于射频识别(RFID)技术的自动动物分选器起到了实验者的机械替代作用。大鼠学会定期且单独进入操作室,并仅在实验期间待在那里。自我激励的大鼠完成位置独特非匹配试验(TUNL)这一复杂触摸屏任务的时间,仅为人工放置到操作室的动物所报告时间的一半。在我们实验室中,两组大鼠的表现相似,且与其他地方先前发表的结果相当。这种在实验室内部和之间的可重复性证实了这种方法的有效性。此外,自动化将每日实验时间减少了80%,消除了动物处理环节,并降低了设备成本。这种自动化的无实验者设置是一种很有前景的工具,在未来研究中具有通过完全自动化测试多种功能的巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9979/5218494/003d148ca342/pone.0169476.g001.jpg

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