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Experiment and analysis of computer vision-based wrist radial and ulnar deviation exercises

机译:基于计算机视觉的手腕径向和尺寸偏差锻炼的实验与分析

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The exercise and rehabilitation based on computer vision system have many benefits and it has attracted the interest of researchers in the computer vision community. The researchers have kept on improving the existing methods by creating novel method or developing new algorithms in image processing and artificial intelligence. This paper presents the experiment and analysis of wrist radial and ulnar deviation exercises system based on computer vision method. These exercises are a part of the upper limb exercise for the rehabilitation program. The wrist radial and ulnar deviation exercises are benefited to improve the mobility of the hand and to reduce the pain. The hand tracking, center of palm detection and fingertips detection and Kinect sensor are used in this exercise system. This system guides the user to perform the radial and ulnar deviation movements through the user's display window. The deviation angle of each movement is measured and recorded automatically. The experimental result shows that the average deviation angle for five users in wrist radial and ulnar deviation experiment is 23.4° for the radial motion and 35.8° for the ulnar motion. These measurements are almost similar to the reference value of range of motion (ROM) standard.
机译:基于计算机视觉系统的运动和康复有许多福利,它引起了计算机视觉社区研究人员的兴趣。研究人员通过创建新方法或在图像处理和人工智能中开发新算法来改善现有方法。本文介绍了基于计算机视觉方法的腕部径向和尺尺偏差运动的实验和分析。这些练习是康复计划上肢练习的一部分。手腕径向和尺偏偏差运动受益于改善手的流动性并减少疼痛。本锻炼系统中使用了手动跟踪,手掌检测和指尖检测和Kinect传感器。该系统引导用户通过用户的显示窗口执行径向和尺方偏差运动。测量并自动记录每个移动的偏差角。实验结果表明,手腕径向和尺尺偏差实验中的五个用户的平均偏差角为径向运动为23.4°,尺寸运动35.8°。这些测量几乎类似于运动范围(ROM)标准的参考值。

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