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An Intelligent In-Shoe System for Gait Monitoring and Analysis with Optimized Sampling and Real-Time Visualization Capabilities

步态 步态分析 跨步 运动捕捉 可穿戴计算机 计算机科学 惯性测量装置 采样(信号处理) 模拟 人工智能 计算机视觉 物理医学与康复 运动(物理) 医学 嵌入式系统 滤波器(信号处理) 计算机安全
作者
Jiaen Wu,Kiran Kuruvithadam,Alessandro Schaer,Richie Stoneham,George Chatzipirpiridis,Chris Easthope,Gill Barry,James M. Martin,Salvador Pané,Bradley J. Nelson,Olgaç Ergeneman,Hamdi Torun
出处
期刊:Sensors [MDPI AG]
卷期号:21 (8): 2869-2869 被引量:23
标识
DOI:10.3390/s21082869
摘要

The deterioration of gait can be used as a biomarker for ageing and neurological diseases. Continuous gait monitoring and analysis are essential for early deficit detection and personalized rehabilitation. The use of mobile and wearable inertial sensor systems for gait monitoring and analysis have been well explored with promising results in the literature. However, most of these studies focus on technologies for the assessment of gait characteristics, few of them have considered the data acquisition bandwidth of the sensing system. Inadequate sampling frequency will sacrifice signal fidelity, thus leading to an inaccurate estimation especially for spatial gait parameters. In this work, we developed an inertial sensor based in-shoe gait analysis system for real-time gait monitoring and investigated the optimal sampling frequency to capture all the information on walking patterns. An exploratory validation study was performed using an optical motion capture system on four healthy adult subjects, where each person underwent five walking sessions, giving a total of 20 sessions. Percentage mean absolute errors (MAE%) obtained in stride time, stride length, stride velocity, and cadence while walking were 1.19%, 1.68%, 2.08%, and 1.23%, respectively. In addition, an eigenanalysis based graphical descriptor from raw gait cycle signals was proposed as a new gait metric that can be quantified by principal component analysis to differentiate gait patterns, which has great potential to be used as a powerful analytical tool for gait disorder diagnostics.
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