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用于量化人体基本运动模式的三维无标记运动捕捉系统的设备间可靠性

Inter-Device Reliability of a Three-Dimensional Markerless Motion Capture System Quantifying Elementary Movement Patterns in Humans.

作者信息

Philipp Nicolas M, Cabarkapa Dimitrije, Cabarkapa Damjana V, Eserhaut Drake A, Fry Andrew C

机构信息

Jayhawk Athletic Performance Laboratory-Wu Tsai Human Performance Alliance, Department of Health, Sport and Exercise Science, Lawrence, KS 66045, USA.

出版信息

J Funct Morphol Kinesiol. 2023 May 22;8(2):69. doi: 10.3390/jfmk8020069.

Abstract

With advancements in technology able to quantify wide-ranging features of human movement, the aim of the present study was to investigate the inter-device technological reliability of a three-dimensional markerless motion capture system (3D-MCS), quantifying different movement tasks. A total of 20 healthy individuals performed a test battery consisting of 29 different movements, from which 214 different metrics were derived. Two 3D-MCS located in close proximity were utilized to quantify movement characteristics. Independent sample -tests with selected reliability statistics (i.e., intraclass correlation coefficient (ICC), effect sizes, and mean absolute differences) were used to evaluate the agreement between the two systems. The study results suggested that 95.7% of all metrics analyzed revealed negligible or small between-device effect sizes. Further, 91.6% of all metrics analyzed showed moderate or better agreement when looking at the ICC values, while 32.2% of all metrics showed excellent agreement. For metrics measuring joint angles (198 metrics), the mean difference between systems was 2.9 degrees, while for metrics investigating distance measures (16 metrics; e.g., center of mass depth), the mean difference between systems was 0.62 cm. Caution is advised when trying to generalize the study findings beyond the specific technology and software used in this investigation. Given the technological reliability reported in this study, as well as the logistical and time-related limitations associated with marker-based motion capture systems, it may be suggested that 3D-MCS present practitioners with an opportunity to reliably and efficiently measure the movement characteristics of patients and athletes. This has implications for monitoring the health/performance of a broad range of populations.

摘要

随着能够量化人类运动广泛特征的技术进步,本研究的目的是调查一种三维无标记运动捕捉系统(3D-MCS)在不同设备间的技术可靠性,该系统用于量化不同的运动任务。共有20名健康个体完成了一组包含29种不同运动的测试,从中得出了214种不同的指标。使用两个紧邻的3D-MCS来量化运动特征。采用独立样本t检验以及选定的可靠性统计量(即组内相关系数(ICC)、效应大小和平均绝对差)来评估两个系统之间的一致性。研究结果表明,在分析的所有指标中,95.7%显示设备间效应大小可忽略不计或较小。此外,从ICC值来看,91.6%的分析指标显示出中等或更好的一致性,而32.2%的指标显示出极佳的一致性。对于测量关节角度的指标(198个指标),两个系统之间的平均差异为2.9度,而对于研究距离测量的指标(16个指标,如质心深度),两个系统之间的平均差异为0.62厘米。在试图将本研究结果推广到本调查中使用的特定技术和软件之外时,建议谨慎行事。鉴于本研究报告的技术可靠性,以及与基于标记的运动捕捉系统相关的后勤和时间限制,可能有人会认为3D-MCS为从业者提供了一个可靠且高效地测量患者和运动员运动特征的机会。这对监测广泛人群的健康/表现具有重要意义。

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