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Wearable Sensor-Based Exercise Biofeedback for Orthopaedic Rehabilitation: A Mixed Methods User Evaluation of a Prototype System

机译:骨科康复的基于传感器的可穿戴运动生物反馈:原型系统的混合方法用户评估

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摘要

The majority of wearable sensor-based biofeedback systems used in exercise rehabilitation lack end-user evaluation as part of the development process. This study sought to evaluate an exemplar sensor-based biofeedback system, investigating the feasibility, usability, perceived impact and user experience of using the platform. Fifteen patients participated in the study having recently undergone knee replacement surgery. Participants were provided with the system for two weeks at home, completing a semi-structured interview alongside the System Usability Scale (SUS) and user version of the Mobile Application Rating Scale (uMARS). The analysis from the SUS (mean = 90.8 [SD = 7.8]) suggests a high degree of usability, supported by qualitative findings. The mean adherence rate was 79% with participants reporting a largely positive user experience, suggesting it offers additional support with the rehabilitation regime. Overall quality from the mean uMARS score was 4.1 out of 5 (SD = 0.39), however a number of bugs and inaccuracies were highlighted along with suggestions for additional features to enhance engagement. This study has shown that patients perceive value in the use of wearable sensor-based biofeedback systems and has highlighted the benefit of user-evaluation during the design process, illustrated the need for real-world accuracy validation, and supports the ongoing development of such systems.
机译:运动康复中使用的大多数基于传感器的可穿戴生物反馈系统,在开发过程中都缺乏对最终用户的评估。这项研究旨在评估基于示例传感器的生物反馈系统,以调查使用该平台的可行性,可用性,可感知的影响和用户体验。 15名患者的研究最近接受了膝关节置换手术。系统为参与者提供了两周的在家学习时间,完成了半结构化访谈以及系统可用性量表(SUS)和移动应用程序等级量表(uMARS)的用户版本。 SUS的分析(平均值= 90.8 [SD = 7.8])表明,在定性研究结果的支持下具有很高的可用性。平均依从率是79%,参与者报告的用户体验很大程度上是积极的,这表明它为康复制度提供了额外的支持。 uMARS平均得分的总体质量为4.1(满分5分)(SD = 0.39),但是突出显示了许多错误和不准确之处,并提出了其他建议以提高参与度。这项研究表明,患者在使用基于可穿戴式传感器的生物反馈系统中具有价值,并突出了设计过程中用户评估的好处,说明了对现实世界中准确性验证的需求,并支持此类系统的持续开发。

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