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Detection of Movement Events of Long-Track Speed Skating Using Wearable Inertial Sensors

机译:使用可穿戴惯性传感器的长轨速滑冰运动事件的检测

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摘要

Inertial measurement units (IMUs) have been used increasingly to characterize long-track speed skating. We aimed to estimate the accuracy of IMUs for use in phase identification of long-track speed skating. Twelve healthy competitive athletes on a university long-track speed skating team participated in this study. Foot pressure, acceleration and knee joint angle were recorded during a 1000-m speed skating trial using the foot pressure system and IMUs. The foot contact and foot-off timing were identified using three methods (kinetic, acceleration and integrated detection) and the stance time was also calculated. Kinetic detection was used as the gold standard measure. Repeated analysis of variance, intra-class coefficients (ICCs) and Bland-Altman plots were used to estimate the extent of agreement between the detection methods. The stance time computed using the acceleration and integrated detection methods did not differ by more than 3.6% from the gold standard measure. The ICCs ranged between 0.657 and 0.927 for the acceleration detection method and 0.700 and 0.948 for the integrated detection method. The limits of agreement were between 90.1% and 96.1% for the average stance time. Phase identification using acceleration and integrated detection methods is valid for evaluating the kinematic characteristics during long-track speed skating.
机译:惯性测量单元(IMU)越来越多地用于表征长轨速滑冰。我们的目标是估算IMUS在长轨速滑冰的阶段识别中使用的准确性。十二次健康的竞争运动员在大学长轨道速度滑冰队参加了这项研究。在使用脚压系统和IMUS的1000米速度滑冰试验期间记录了脚压,加速和膝关节角。使用三种方法(动力学,加速和集成检测)鉴定脚接触和脚步定时,并且还计算姿势时间。动力学检测用作黄金标准度量。反复分析方差分析,类内系数(ICC)和Bland-Altman图用于估计检测方法之间的一致性程度。使用加速和集成检测方法计算的姿势时间与黄金标准度量没有超过3.6%。 ICC为加速检测方法0.657和0.927之间,为集成检测方法为0.700和0.948。平均姿态时间的协议限额为90.1%至96.1%。使用加速和集成检测方法的相位识别对于在长轨道速度滑冰期间评估运动特性是有效的。

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