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SVMT: A MATLAB toolbox for stereo-vision motion tracking of motor reactivity

机译:sVmT:用于立体视觉运动跟踪运动反应性的maTLaB工具箱

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摘要

This article presents a Matlab-based stereo-vision motion tracking system (SVMT) for the detection of human motor reactivity elicited by sensory stimulation. It is a low-cost, non-intrusive system supported by Graphical User Interface (GUI) software, and has been successfully tested and integrated in a broad array of physiological recording devices at the Human Physiology Laboratory in the University of Granada. The SVMT GUI software handles data in Matlab and ASCII formats. Internal functions perform lens distortion correction, camera geometry definition, feature matching, as well as data clustering and filtering to extract 3D motion paths of specific body areas. System validation showed geo-rectification errors below 0.5 mm, while feature matching and motion paths extraction procedures were successfully validated with manual tracking and RMS errors were typically below 2% of the movement range. The application of the system in a psychophysiological experiment designed to elicit a startle motor response by the presentation of intense and unexpected acoustic stimuli, provided reliable data probing dynamical features of motor responses and habituation to repeated stimulus presentations. The stereo-geolocation and motion tracking performance of the SVMT system were successfully validated through comparisons with surface EMG measurements of eyeblink startle, which clearly demonstrate the ability of SVMT to track subtle body movement, such as those induced by the presentation of intense acoustic stimuli. Finally, SVMT provides an efficient solution for the assessment of motor reactivity not only in controlled laboratory settings, but also in more open, ecological environments.
机译:本文提出了一种基于Matlab的立体视觉运动跟踪系统(SVMT),用于检测由感觉刺激引起的人体运动反应。它是一种受图形用户界面(GUI)软件支持的低成本,非侵入式系统,并已在格拉纳达大学人类生理实验室成功地测试并集成到各种生理记录设备中。 SVMT GUI软件处理Matlab和ASCII格式的数据。内部功能执行镜头畸变校正,相机几何形状定义,功能匹配以及数据聚类和过滤,以提取特定身体区域的3D运动路径。系统验证显示,校正误差低于0.5毫米,而特征匹配和运动路径提取程序已通过手动跟踪成功验证,RMS误差通常低于运动范围的2%。该系统在旨在通过强烈和意想不到的声刺激的表现引起惊吓的运动反应的心理生理学实验中的应用,提供了可靠的数据来探测运动反应的动力学特征和习惯性重复刺激的表现。通过与眨眼惊吓的表面肌电图测量结果进行比较,成功验证了SVMT系统的立体定位和运动跟踪性能,这些测量结果清楚地证明了SVMT能够跟踪人体细微运动的能力,例如由强烈声刺激引起的运动。最后,SVMT不仅在受控实验室环境中,而且在更加开放的生态环境中,为评估电机反应性提供了一种有效的解决方案。

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