Salih Çabuk, Süleyman Ulupınar, İzzet İnce, Serhat Özbay
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引用次数: 0
Abstract
Markerless motion capture systems have gained increasing interest as practical alternatives to gold-standard references systems in clinical and sports contexts. This systematic review and three-level metaanalysis aimed to evaluate the criterion validity of OpenCap and to systematically summarize the available evidence regarding its reliability. A literature search was conducted across Web of Science, PubMed, Scopus, and EBSCO. Among the 12 studies included in the systematic review, 11 provided sufficient data for the metaanalytic synthesis of criterion validity, encompassing 184 participants, from which 640 effect sizes (ES), 230 Fisher's Z values, and 1087 root mean square error (RMSE) values were obtained. OpenCap demonstrated a statistically significant, yet practically trivial effect compared to criterion devices (ES = -0.140; p = 0.021). Fisher's Z transformation indicated a good-to-excellent correlation with criterion devices (r = 0.845; p = 0.005). The pooled RMSE was 5.877°, which decreased to 5.197° after sensitivity analysis and further to 4.940° following trim-and-fill adjustment. In terms of reliability, test-retest consistency generally ranged from moderate to very good across many joint angles and tasks, although marked variability was observed in certain task-joint combinations, particularly in high-velocity movements and complex joint actions. OpenCap, as a smartphonebased markerless motion capture system, can provide valid and acceptable kinematic measurements when compared to criterion devices. However, its performance varies depending on task complexity and joint-specific demands, underscoring the need for evaluation across diverse populations, a wider range of task types, and within standardized methodological frameworks.
无标记运动捕捉系统在临床和运动环境中作为金标准参考系统的实际替代方案而获得了越来越多的兴趣。本系统综述和三水平荟萃分析旨在评估OpenCap的标准效度,并系统地总结有关其可靠性的现有证据。通过Web of Science、PubMed、Scopus和EBSCO进行文献检索。在纳入系统评价的12项研究中,11项研究为标准效度的元分析综合提供了足够的数据,共184名受试者,从中获得640个效应量(ES)、230个Fisher’s Z值和1087个均方根误差(RMSE)值。与标准装置相比,OpenCap显示出统计学上显著的,但实际上微不足道的影响(ES = -0.140; p = 0.021)。Fisher’s Z变换显示与判据装置有良好到极好的相关性(r = 0.845; p = 0.005)。综合RMSE为5.877°,敏感性分析后RMSE降至5.197°,补边调整后RMSE降至4.940°。在可靠性方面,测试-重测一致性在许多关节角度和任务中通常从中等到非常好,尽管在某些任务-关节组合中观察到明显的变异性,特别是在高速运动和复杂的关节动作中。OpenCap作为一种基于智能手机的无标记运动捕捉系统,与标准设备相比,可以提供有效和可接受的运动学测量。然而,其性能因任务复杂性和联合特定需求而异,强调需要在不同人群、更广泛的任务类型和标准化方法框架内进行评估。
期刊介绍:
Biology of Sport is the official journal of the Institute of Sport in Warsaw, Poland, published since 1984.
Biology of Sport is an international scientific peer-reviewed journal, published quarterly in both paper and electronic format. The journal publishes articles concerning basic and applied sciences in sport: sports and exercise physiology, sports immunology and medicine, sports genetics, training and testing, pharmacology, as well as in other biological aspects related to sport. Priority is given to inter-disciplinary papers.