German Center for the Protection of Laboratory Animals (Bf3R), German Federal Institute for Risk Assessment (BfR), Max-Dohrn-Str. 8-10, 10589, Berlin, Germany.
Institute of Animal Welfare, Animal Behavior and Laboratory Animal Science, Freie Universität Berlin, Königsweg 67, 14163, Berlin, Germany.
Behav Res Methods. 2022 Apr;54(2):676-689. doi: 10.3758/s13428-021-01593-7. Epub 2021 Aug 3.
Existing methods for analysis of home cage-based preference tests are either time-consuming, not suitable for group management, expensive, and/or based on proprietary equipment that is not freely available. To correct this, we developed an automated system for group-housed mice based on radio frequency identification: the Mouse Position Surveillance System (MoPSS). The system uses an Arduino microcontroller with compatible components; it is affordable and easy to rebuild for every laboratory because it uses free and open-source software and open-source hardware with the RFID readers as the only proprietary component. The MoPSS was validated using female C57BL/6J mice and manual video comparison. It proved to be accurate even for fast-moving mice (up to 100% accuracy after logical reconstruction), and is already implemented in several studies in our laboratory. Here, we provide the complete construction description as well as the validation data and the results of an example experiment. This tracking system will allow group-based preference testing with individually identified mice to be carried out in a convenient manner. This facilitation of preference tests creates the foundation for better housing conditions from the animals' perspective.
现有的基于家笼偏好测试的分析方法要么耗时,不适合群体管理,昂贵,并且/或者基于专有设备,无法自由获取。为了纠正这一点,我们开发了一种基于射频识别的用于群居小鼠的自动化系统:小鼠位置监测系统(MoPSS)。该系统使用带有兼容组件的 Arduino 微控制器;由于它使用免费和开源软件以及带有 RFID 读取器的开源硬件作为唯一的专有组件,因此对每个实验室来说都负担得起且易于重建。MoPSS 使用雌性 C57BL/6J 小鼠和手动视频比较进行了验证。它甚至可以准确地跟踪快速移动的小鼠(经过逻辑重建后准确率高达 100%),并且已经在我们实验室的几个研究中得到了实施。在这里,我们提供完整的构建说明以及验证数据和一个示例实验的结果。这种跟踪系统将允许使用单独识别的小鼠进行基于群体的偏好测试,以方便的方式进行。这种偏好测试的简化为从动物的角度改善饲养条件奠定了基础。