首页> 外文期刊>Journal of biomechanical engineering. >A Wearable System to Assess Risk for Anterior Cruciate Ligament Injury During Jump Landing: Measurements of Temporal Events, Jump Height, and Sagittal Plane Kinematics
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A Wearable System to Assess Risk for Anterior Cruciate Ligament Injury During Jump Landing: Measurements of Temporal Events, Jump Height, and Sagittal Plane Kinematics

机译:一种可穿戴系统,用于评估跳跃着陆过程中前十字韧带受伤的风险:时间事件,跳跃高度和矢状平面运动学的测量

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摘要

The incidence of anterior cruciate ligament (ACL) injury remains high, and there is a need for simple, cost effective methods to identify athletes at a higher risk for ACL injury. Wearable measurement systems offer potential methods to assess the risk of ACL injury during jumping tasks. The objective of this study was to assess the capacity of a wearable inertial-based system to evaluate ACL injury risk during jumping tasks. The system accuracy for measuring temporal events (initial contact, toe-off), jump height, and sagittal plane angles (knee, trunk) was assessed by comparing results obtained with the wearable system to simultaneous measurements obtained with a marker-based optoelectronic reference system. Thirty-eight healthy participants (20 male and 18 female) performed drop jumps with bilateral and unilateral support landing. The mean differences between the temporal events obtained with both systems were below 5 ms, and the precisions were below 24 ms. The mean jump heights measured with both systems differed by less than 1 mm, and the associations (Pearson correlation coefficients) were above 0.9. For the discrete angle parameters, there was an average association of 0.91 and precision of 3.5° for the knee flexion angle and an association of 0.77 and precision of 5.5deg° for the trunk lean. The results based on the receiver-operating characteristic (ROC) also demonstrated that the proposed wearable system could identify movements at higher risk for ACL injury. The area under the ROC plots was between 0.89 and 0.99 for the knee flexion angle and between 0.83 and 0.95 for the trunk lean. The wearable system demonstrated good concurrent validity with marker-based measurements and good discriminative performance in terms of the known risk factors for ACL injury. This study suggests that a wearable system could be a simple cost-effective tool for conducting risk screening or for providing focused feedback.
机译:前交叉韧带(ACL)损伤的发生率仍然很高,因此需要一种简单,经济有效的方法来识别运动员中ACL损伤风险更高。可穿戴的测量系统提供了潜在的方法来评估跳跃任务期间ACL受伤的风险。这项研究的目的是评估基于可惯性的可穿戴系统评估跳跃任务期间ACL受伤风险的能力。通过比较可穿戴系统获得的结果与基于标记的光电参考系统获得的同时测量结果,评估了测量时间事件(初始接触,脚趾离开),跳跃高度和矢状平面角(膝盖,躯干)的系统精度。 38名健康参与者(20名男性和18名女性)在双侧和单侧支撑着陆时进行了跳跳动作。两个系统获得的时间事件之间的平均差异在5 ms以下,而精度在24 ms以下。两个系统测得的平均跳跃高度相差不到1毫米,并且关联(皮尔森相关系数)均高于0.9。对于离散的角度参数,膝关节屈曲角度的平均关联度为0.91,精度为3.5°,而躯干倾斜度的平均关联度为0.77,精度为5.5度。基于接收器操作特性(ROC)的结果还表明,提出的可穿戴系统可以识别出发生ACL损伤风险较高的运动。膝关节屈曲角度下,ROC曲线下的面积在0.89至0.99之间,而躯干倾斜角度在0.83至0.95之间。根据已知的ACL损伤危险因素,可穿戴系统在基于标记的测量中显示出良好的并发有效性,并具有良好的判别性能。这项研究表明,可穿戴系统可能是进行风险筛查或提供集中反馈的简单经济有效的工具。

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