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Comparison between Marker-less Kinect-based and Conventional 2D Motion Analysis System on Vertical Jump Kinematic Properties Measured from Sagittal View

机译:基于标记的基于Kinect和常规2D运动分析系统的比较从矢状视图测量的垂直跳跃运动学

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Marker-less motion analysis system is the future for sports motion study. This is because it can potentially be applied in real time competitive matches because no marking system is required. The purpose of this study is to observe the suitability and practicality of one of the basic marker-less motion analysis system applications on human movement from sagittal view plane. In this study, the movement of upper and lower extremities of the human body during a vertical jump act was chosen as the movement to be observed. One skilled volleyball player was recruited to perform multiple trials of the vertical jump (n=90). All trials were recorded by one depth camera and one Full HD video camera. The kinematics of shoulder joint was chosen to represent the upper body extremity movement while knee joint was chosen as the representative of the lower body extremity movement during the vertical jump's initial position to take-off position (IP-TP) and take-off position to highest position (TP-HP). Results collected from depth camera-based marker less motion analysis system were then compared with results obtained from a conventional video-based 2-D motion analysis system. Results indicated that there were significant differences between the two analysis methods in measuring the kinematic properties in both lower (knee joint) and upper (shoulder joint) extremity body movements (p < .05). It was also found that a lower correlation between these two analysis methods was more obvious for the knee joint movement [38.61% matched, r= 0.12 (IP-TP) and r=0.01 (TP-HP)] compared to the shoulder joint movement [61.40% matched, r=0.10 (IP-TP) and r=0.11 (TP-HP)].
机译:标记的运动分析系统是运动运动研究的未来。这是因为它可能在实时竞争匹配中应用,因为不需要标记系统。本研究的目的是观察来自矢状视图平面的人类运动中的基本标记运动分析系统应用之一的适用性和实用性。在该研究中,选择人体在垂直跳转动作期间的上肢和下肢的运动作为待观察的运动。招募了一个熟练的排球运动员以执行垂直跳转的多次试验(n = 90)。所有试验均由一个深度相机和一个全高清摄像机记录。选择肩关节的运动学以代表上肢末端运动,同时选择膝关节作为下半身末端运动的代表在垂直跳转的初始位置到起飞位置(IP-TP)和起飞位置最高位置(TP-HP)。然后将从深度相机的标记收集的结果与从传统的基于视频的2-D运动分析系统获得的结果进行比较。结果表明,两种分析方法在测量下(膝关节)和上部(肩关节)末端体运动中的运动学性能之间存在显着差异(P <.05)。还发现,与肩关节运动相比,这两个分析方法与膝关节运动更明显的相关性更为明显[38.61%匹配,r = 0.12(IP-TP)和r = 0.01(Tp-HP)] [61.40%匹配,r = 0.10(IP-TP)和r = 0.11(TP-HP)]。

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