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智能手机应用程序在步态和平衡评估中的有效性和可靠性。

Validity and Reliability of a Smartphone App for Gait and Balance Assessment.

机构信息

Health & Rehabilitation Research Institute, Auckland University of Technology, Auckland 0627, New Zealand.

Department of Sport Science, Sports Research Centre, Miguel Hernandez University of Elche, 03202 Elche, Spain.

出版信息

Sensors (Basel). 2021 Dec 25;22(1):124. doi: 10.3390/s22010124.

Abstract

Advances in technology provide an opportunity to enhance the accuracy of gait and balance assessment, improving the diagnosis and rehabilitation processes for people with acute or chronic health conditions. This study investigated the validity and reliability of a smartphone-based application to measure postural stability and spatiotemporal aspects of gait during four static balance and two gait tasks. Thirty healthy participants (aged 20-69 years) performed the following tasks: (1) standing on a firm surface with eyes opened, (2) standing on a firm surface with eyes closed, (3) standing on a compliant surface with eyes open, (4) standing on a compliant surface with eyes closed, (5) walking in a straight line, and (6) walking in a straight line while turning their head from side to side. During these tasks, the app quantified the participants' postural stability and spatiotemporal gait parameters. The concurrent validity of the smartphone app with respect to a 3D motion capture system was evaluated using partial Pearson's correlations (r) and limits of the agreement (LoA%). The within-session test-retest reliability over three repeated measures was assessed with the intraclass correlation coefficient (ICC) and the standard error of measurement (SEM). One-way repeated measures analyses of variance (ANOVAs) were used to evaluate responsiveness to differences across tasks and repetitions. Periodicity index, step length, step time, and walking speed during the gait tasks and postural stability outcomes during the static tasks showed moderate-to-excellent validity (0.55 ≤ r ≤ 0.98; 3% ≤ LoA% ≤ 12%) and reliability scores (0.52 ≤ ICC ≤ 0.92; 1% ≤ SEM% ≤ 6%) when the repetition effect was removed. Conversely, step variability and asymmetry parameters during both gait tasks generally showed poor validity and reliability except step length asymmetry, which showed moderate reliability (0.53 ≤ ICC ≤ 0.62) in both tasks when the repetition effect was removed. Postural stability and spatiotemporal gait parameters were found responsive ( < 0.05) to differences across tasks and test repetitions. Along with sound clinical judgement, the app can potentially be used in clinical practice to detect gait and balance impairments and track the effectiveness of rehabilitation programs. Further evaluation and refinement of the app in people with significant gait and balance deficits is needed.

摘要

技术的进步为提高步态和平衡评估的准确性提供了机会,从而改善了急性或慢性健康状况人群的诊断和康复过程。本研究调查了一种基于智能手机的应用程序在测量四项静态平衡和两项步态任务中的姿势稳定性和时空步态参数方面的有效性和可靠性。三十名健康参与者(年龄 20-69 岁)完成了以下任务:(1)睁眼站立在坚固的表面上,(2)闭眼站立在坚固的表面上,(3)睁眼站立在柔软的表面上,(4)闭眼站立在柔软的表面上,(5)直线行走,(6)直线行走时左右转头。在这些任务中,应用程序量化了参与者的姿势稳定性和时空步态参数。使用部分 Pearson 相关系数(r)和一致性界限(LoA%)评估了智能手机应用与 3D 运动捕捉系统的相关性。使用组内相关系数(ICC)和测量误差(SEM)评估了三次重复测量的测试-重测信度。使用单向重复测量方差分析(ANOVA)评估了对任务和重复之间差异的反应性。当去除重复效应时,步态任务中的周期指数、步长、步时和行走速度以及静态任务中的姿势稳定性结果显示出中度到高度的有效性(0.55 ≤ r ≤ 0.98;3% ≤ LoA% ≤ 12%)和可靠性得分(0.52 ≤ ICC ≤ 0.92;1% ≤ SEM% ≤ 6%)。相反,除了步长不对称外,步态任务中的步长变化和不对称参数的有效性和可靠性通常较差,当去除重复效应时,在两个任务中步长不对称都具有中度可靠性(0.53 ≤ ICC ≤ 0.62)。当去除重复效应时,姿势稳定性和时空步态参数对任务和测试重复之间的差异有反应(<0.05)。除了基于临床判断外,该应用程序还可以在临床实践中用于检测步态和平衡障碍,并跟踪康复计划的效果。需要进一步评估和改进该应用程序,使其适用于有明显步态和平衡障碍的人群。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a86/8747233/4426d0163105/sensors-22-00124-g001.jpg

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