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Inertial sensor, 3D and 2D assessment of stroke phases in freestyle swimming

机译:自由式游泳中行程阶段的惯性传感器,3D和2D评估

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Assessment of human movement kinetics and kinematics use various methods of capture. Typical systems used are 2D or 3D camera systems. These laboratory-based simulations have accurately estimated movement variables. While these systems have shown accuracy in assessment, there are inherent problems with capture capabilities including: simulation of actions, and limitation of the camera system's capture range. Therefore data capture in a realistic environment is usually quite inhibitory. Microtechnology has been shown to address these restrictive issues of assessing human movement. The use of inertial sensors for land and water based biomechanical applications has been steadily gaining popularity. Traditional systems are severely hampered in aquatic environments, due to problems imposed by liquids that are not present in gaseous surroundings. These limitations do not intrude on inertial sensor captured data. Prior to a water based research, inertial sensor technology would require validation. The aim of this study was to validate an inertial system to measure temporal kinematics of a freestyle armstroke on a swimming bench. Six participants simulated freestyle swimming action. Variables measured were components of the stroke phase. A triaxial inertial sensor was positioned on the dorsal side and at the distal end of the forearm. Validation was carried out with comparisons against 2D video capture and a 3D infrared camera system. For statistical analysis, a Pearson's correlation, typical error of estimate, and mean bias were applied. Very large correlations, along with minimal error and mean bias indicate that inertial sensors as a viable option for swimming armstroke assessment.
机译:对人体运动的评估动力学和运动学使用各种捕获方法。使用的典型系统是2D或3D相机系统。基于实验室的模拟具有精确估计的运动变量。虽然这些系统在评估中显示了准确性,但是存在捕获能力的固有问题,包括:仿真操作,以及相机系统捕获范围的限制。因此,现实环境中的数据捕获通常是非常抑制的。已经表明了微技术来解决评估人类运动的这些限制性问题。使用惯性传感器的土地和水基生物力学应用已经稳步增强了普及。由于不存在气体周围环境的液体施加的问题,传统系统受到水生环境中的严重阻碍。这些限制不会侵入惯性传感器捕获数据。在水基研究之前,惯性传感器技术将需要验证。本研究的目的是验证惯性系统,以测量在游泳替补席上的自由式军用的时间运动学。六位参与者模拟自由式游泳行动。测量的变量是中风相的组分。三轴惯性传感器定位在前侧和前臂的远端。通过针对2D视频捕获和3D红外相机系统进行比较进行验证。对于统计分析,应用Pearson的相关性,估计误差和平均偏差。非常大的相关性,以及最小的误差和平均偏差表明惯性传感器作为游泳armstroTe评估的可行选择。

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