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An Inertial Sensor-Based Method for Estimating the Athletes Relative Joint Center Positions and Center of Mass Kinematics in Alpine Ski Racing

机译:基于惯性传感器的高山滑雪比赛中运动员相对关节中心位置和运动学中心的估计方法

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摘要

For the purpose of gaining a deeper understanding of the relationship between external training load and health in competitive alpine skiing, an accurate and precise estimation of the athlete's kinematics is an essential methodological prerequisite. This study proposes an inertial sensor-based method to estimate the athlete's relative joint center positions and center of mass (CoM) kinematics in alpine skiing. Eleven inertial sensors were fixed to the lower and upper limbs, trunk, and head. The relative positions of the ankle, knee, hip, shoulder, elbow, and wrist joint centers, as well as the athlete's CoM kinematics were validated against a marker-based optoelectronic motion capture system during indoor carpet skiing. For all joints centers analyzed, position accuracy (mean error) was below 110 mm and precision (error standard deviation) was below 30 mm. CoM position accuracy and precision were 25.7 and 6.7 mm, respectively. Both the accuracy and precision of the system to estimate the distance between the ankle of the outside leg and CoM (measure quantifying the skier's overall vertical motion) were found to be below 11 mm. Some poorer accuracy and precision values (below 77 mm) were observed for the athlete's fore-aft position (i.e., the projection of the outer ankle-CoM vector onto the line corresponding to the projection of ski's longitudinal axis on the snow surface). In addition, the system was found to be sensitive enough to distinguish between different types of turns (widearrow). Thus, the method proposed in this paper may also provide a useful, pervasive way to monitor and control adverse external loading patterns that occur during regular on-snow training. Moreover, as demonstrated earlier, such an approach might have a certain potential to quantify competition time, movement repetitions and/or the accelerations acting on the different segments of the human body. However, prior to getting feasible for applications in daily training, future studies should primarily focus on a simplification of the sensor setup, as well as a fusion with global navigation satellite systems (i.e., the estimation of the absolute joint and CoM positions).
机译:为了更深入地了解高山竞技滑雪中外部训练负荷与健康之间的关系,准确而准确地评估运动员的运动学是方法学的基本前提。这项研究提出了一种基于惯性传感器的方法来估算运动员在高山滑雪中的相对关节中心位置和质心(CoM)运动学。下肢和上肢,躯干和头部固定有11个惯性传感器。在室内地毯滑雪过程中,基于标记物的光电运动捕捉系统验证了脚踝,膝盖,臀部,肩膀,肘部和腕关节中心以及运动员的CoM运动学的相对位置。对于所有分析的关节中心,位置精度(平均误差)均低于110毫米,精度(误差标准偏差)均低于30毫米。 CoM定位精度和精确度分别为25.7和6.7 mm。估计系统的准确性和精密度都在11毫米以下,该系统用于估计外腿脚踝与CoM之间的距离(量化滑雪者整体垂直运动的度量)。观察到运动员的前后位置(即外踝CoM向量在与滑雪板纵轴在雪面上的投影相对应的线上的投影)上的准确性和精度值(77毫米以下)差一些。另外,发现该系统足够灵敏以区分不同类型的转弯(宽/窄)。因此,本文提出的方法还可以提供一种有用的,普遍的方式来监视和控制在常规雪上训练过程中发生的不利的外部负荷模式。而且,如前所述,这种方法可能具有量化竞争时间,运动重复和/或作用于人体不同部位的加速度的潜力。但是,在将其应用于日常训练之前,未来的研究应主要集中在简化传感器设置以及与全球导航卫星系统融合(即,估计绝对联合位置和CoM位置)上。

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