Graduate Institute of Biomedical Engineering, National Chung Hsing University, Taichung, Taiwan.
Department of Electrical Engineering, National Chi Nan University, Nantou, Taiwan.
J Healthc Eng. 2017;2017:8465212. doi: 10.1155/2017/8465212. Epub 2017 Mar 14.
. The measurement of the functional range of motion (FROM) of lower limb joints is an essential parameter for gait analysis especially in evaluating rehabilitation programs. . To develop a simple, reliable, and affordable mechanical goniometer (MGR) for gait analysis, with six-degree freedom to dynamically assess lower limb joint angles. . Randomized control trials, in which a new MGR was developed for the measurements of FROM of lower limb joints. . Reliability of the designed MGR was evaluated and validated by a motion analysis system (MAS). . Thirty healthy subjects participated in this study. . Reliability and validity of the new MGR were tested by intraclass correlation coefficient (ICC), Bland-Altman plots, and linear correlation analysis. . The MGR has good inter- and intrarater reliability and validity with ICC ≥ 0.93 (for both). Moreover, measurements made by MGR and MAS were comparable and repeatable with each other, as confirmed by Bland-Altman plots. Furthermore, a very high degree of linear correlation ( ≥ 0.92 for all joint angle measurements) was found between the lower limb joint angles measured by MGR and MAS. . A simple, reliable, and affordable MGR has been designed and developed to aid clinical assessment and treatment evaluation of gait disorders.
. 下肢关节功能活动范围(FROM)的测量是步态分析的基本参数,特别是在评估康复方案时。. 为了开发一种用于步态分析的简单、可靠且经济实惠的机械量角器(MGR),具有六自由度以动态评估下肢关节角度。. 随机对照试验,为下肢关节 FROM 的测量开发了一种新的 MGR。. 使用运动分析系统(MAS)评估和验证设计的 MGR 的可靠性。. 三十名健康受试者参加了这项研究。. 通过组内相关系数(ICC)、Bland-Altman 图和线性相关分析测试新 MGR 的可靠性和有效性。. MGR 具有良好的组内和组间可靠性和有效性,ICC≥0.93(均如此)。此外,MGR 和 MAS 测量的结果具有可比性和可重复性,Bland-Altman 图也证实了这一点。此外,通过 MGR 和 MAS 测量的下肢关节角度之间发现了非常高的线性相关性(所有关节角度测量的相关性≥0.92)。. 已经设计和开发了一种简单、可靠且经济实惠的 MGR,以帮助临床评估和治疗步态障碍。