Behavioral Neuroscience, Faculty for Biology and Biotechnology, Ruhr-University Bochum, ND7/32, Universitätsstr. 150, 44780, Bochum, Germany.
Department of Human Genetics, Medical Faculty, Ruhr-University Bochum, Bochum, Germany.
Sci Rep. 2024 Apr 13;14(1):8571. doi: 10.1038/s41598-024-59187-0.
This study emphasizes the benefits of open-source software such as DeepLabCut (DLC) and R to automate, customize and enhance data analysis of motor behavior. We recorded 2 different spinocerebellar ataxia type 6 mouse models while performing the classic beamwalk test, tracked multiple body parts using the markerless pose-estimation software DLC and analyzed the tracked data using self-written scripts in the programming language R. The beamwalk analysis script (BAS) counts and classifies minor and major hindpaw slips with an 83% accuracy compared to manual scoring. Nose, belly and tail positions relative to the beam, as well as the angle at the tail base relative to the nose and tail tip were determined to characterize motor deficits in greater detail. Our results found distinct ataxic abnormalities such as an increase in major left hindpaw slips and a lower belly and tail position in both SCA6 ataxic mouse models compared to control mice at 18 months of age. Furthermore, a more detailed analysis of various body parts relative to the beam revealed an overall lower body position in the SCA6 compared to the CT-longQ27 mouse line at 18 months of age, indicating a more severe ataxic deficit in the SCA6 group.
本研究强调了开源软件(如 DeepLabCut (DLC) 和 R)在自动分析、自定义和增强运动行为数据方面的优势。我们在进行经典的摆棒测试时记录了 2 种不同的脊髓小脑共济失调 6 型(SCA6)小鼠模型的数据,使用无标记位姿估计软件 DLC 跟踪多个身体部位,并使用编程语言 R 中的自编脚本分析跟踪数据。与手动评分相比,摆棒分析脚本(BAS)的准确率为 83%,可以准确计数和分类次要和主要的后足滑步。我们还确定了鼻尖、腹部和尾巴相对于摆棒的位置,以及尾巴基部相对于鼻尖和尾巴尖端的角度,以便更详细地描述运动缺陷。我们的研究结果发现,与对照组相比,18 月龄的 SCA6 共济失调小鼠模型存在明显的共济失调异常,如左后足滑步次数增加、腹部和尾巴位置降低。此外,与 CT-longQ27 鼠线相比,SCA6 鼠线的各部位相对于摆棒的整体位置更低,表明 SCA6 组的共济失调缺陷更为严重。