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Measurement of Walking Ground Reactions in Real-Life Environments: A Systematic Review of Techniques and Technologies

机译:现实环境中步行地面反应的测量:技术和系统综述

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摘要

Monitoring natural human gait in real-life environments is essential in many applications, including quantification of disease progression, monitoring the effects of treatment, and monitoring alteration of performance biomarkers in professional sports. Nevertheless, developing reliable and practical techniques and technologies necessary for continuous real-life monitoring of gait is still an open challenge. A systematic review of English-language articles from scientific databases including Scopus, ScienceDirect, Pubmed, IEEE Xplore, EBSCO and MEDLINE were carried out to analyse the ‘accuracy’ and ‘practicality’ of the current techniques and technologies for quantitative measurement of the tri-axial walking ground reactions outside the laboratory environment, and to highlight their strengths and shortcomings. In total, 679 relevant abstracts were identified, 54 full-text papers were included in the paper and the quantitative results of 17 papers were used for meta-analysis and comparison. Three classes of methods were reviewed: (1) methods based on measured kinematic data; (2) methods based on measured plantar pressure; and (3) methods based on direct measurement of ground reactions. It was found that all three classes of methods have competitive accuracy levels with methods based on direct measurement of the ground reactions showing highest accuracy while being least practical for long-term real-life measurement. On the other hand, methods that estimate ground reactions using measured body kinematics show highest practicality of the three classes of methods reviewed. Among the most prominent technical and technological challenges are: (1) reducing the size and price of tri-axial load-cells; (2) improving the accuracy of orientation measurement using IMUs; (3) minimizing the number and optimizing the location of required IMUs for kinematic measurement; (4) increasing the durability of pressure insole sensors, and (5) enhancing the robustness and versatility of the ground reactions estimation methods to include pathological gaits and natural variability of gait in real-life physical environment.
机译:在许多应用中,监视现实生活环境中的自然步态非常重要,包括量化疾病进展,监视治疗效果以及监视专业运动中性能生物标志物的变化。然而,开发可靠和实用的技术以及连续实时监测步态所必需的技术仍然是一个挑战。对包括Scopus,ScienceDirect,Pubmed,IEEE Xplore,EBSCO和MEDLINE在内的科学数据库中的英语文章进行了系统的综述,以分析当前技术和技术的定量和三重量化的“实用性”。在实验室环境之外进行轴向步行地面反应,并突出其优点和缺点。共鉴定679篇相关摘要,收录54篇全文,并对17篇论文的定量结果进行荟萃分析和比较。审查了三类方法:(1)基于测得的运动学数据的方法; (2)基于测得的足底压力的方法; (3)直接测量地面反应的方法。结果发现,这三类方法都具有极高的精度水平,而基于直接测量地面反应的方法显示出最高的精度,而对于长期的实际测量却不那么实用。另一方面,使用测得的人体运动学估算地面反应的方法显示了所审查的三类方法中最高的实用性。最突出的技术挑战包括:(1)减小三轴称重传感器的尺寸和价格; (2)提高使用IMU的定向测量的准确性; (3)最小化运动测量所需IMU的数量并优化其位置; (4)提高压力鞋垫传感器的耐用性,以及(5)增强地面反应估算方法的鲁棒性和多功能性,以包括现实生活中物理环境中的病理性步态和步态的自然可变性。

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