Suppr超能文献

一种新型步态运动分析系统的可靠性与有效性检验

Reliability and Validity Examination of a New Gait Motion Analysis System.

作者信息

Matsuda Tadamitsu, Fujino Yuji, Morisawa Tomoyuki, Takahashi Tetsuya, Kakegawa Kei, Matsumoto Takanari, Kiyohara Takehiko, Fukushima Hiroshi, Higuchi Makoto, Torimoto Yasuo, Miwa Masaki, Fujiwara Toshiyuki, Daida Hiroyuki

机构信息

Department of Physical Therapy, Faculty of Health Science, Juntendo University, Tokyo 113-8421, Japan.

Global Development Center, Development Department, Development Section, IMASEN Electric Industrial Co., Ltd., Inuyama 484-0083, Japan.

出版信息

Sensors (Basel). 2025 Feb 11;25(4):1076. doi: 10.3390/s25041076.

Abstract

Recent advancements have made two-dimensional (2D) clinical gait analysis systems more accessible and portable than traditional three-dimensional (3D) clinical systems. This study evaluates the reliability and validity of gait measurements using monocular and composite camera setups with VisionPose, comparing them to the Vicon 3D motion capture system as a reference. Key gait parameters-including hip and knee joint angles, and time and distance factors-were assessed under normal, maximum speed, and tandem gait conditions during level walking. The results show that the intraclass correlation coefficient (ICC(1,k)) for the 2D model exceeded 0.969 for the monocular camera and 0.963 for the composite camera for gait parameters. Time-distance gait parameters demonstrated excellent relative agreement across walking styles, while joint range of motion showed overall strong agreement. However, accuracy was lower for measurements during tandem walking. The Cronbach's alpha coefficient for time-distance parameters ranged from 0.932 to 0.999 (monocular) and from 0.823 to 0.998 (composite). In contrast, for joint range of motion, the coefficient varied more widely, ranging from 0.826 to 0.985 (monocular) and from 0.314 to 0.974 (composite). The correlation coefficients for spatiotemporal gait parameters were greater than 0.933 (monocular) and 0.837 (composite). However, for joint angle parameters, the coefficients were lower during tandem walking. This study underscores the potential of 2D models in clinical applications and highlights areas for improvement to enhance their reliability and application scope.

摘要

最近的进展使二维(2D)临床步态分析系统比传统的三维(3D)临床系统更容易获得和便携。本研究评估了使用单目和复合相机设置的VisionPose步态测量的可靠性和有效性,并将其与Vicon 3D运动捕捉系统作为参考进行比较。在水平行走的正常、最大速度和串联步态条件下,评估了关键步态参数,包括髋关节和膝关节角度以及时间和距离因素。结果表明,二维模型的组内相关系数(ICC(1,k))对于步态参数,单目相机超过0.969,复合相机超过0.963。时间-距离步态参数在不同行走方式下表现出极好的相对一致性,而关节活动范围总体上表现出很强的一致性。然而,串联行走时测量的准确性较低。时间-距离参数的克朗巴哈系数在0.932至0.999(单目)和0.823至0.998(复合)之间。相比之下,对于关节活动范围,该系数变化更大,在0.826至0.985(单目)和0.314至0.974(复合)之间。时空步态参数的相关系数大于0.933(单目)和0.837(复合)。然而,对于关节角度参数,串联行走时系数较低。本研究强调了二维模型在临床应用中的潜力,并突出了需要改进以提高其可靠性和应用范围的领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7257/11858938/eafb168a9258/sensors-25-01076-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验