Department of Rehabilitation Medicine, Erasmus MC - University Medical Center Rotterdam, Rotterdam, The Netherlands.
Department of Biomedical Signals and Systems, University of Twente, Enschede, The Netherlands.
Disabil Rehabil Assist Technol. 2024 May;19(4):1392-1404. doi: 10.1080/17483107.2023.2183993. Epub 2023 Mar 11.
Telerehabilitation systems have the potential to enable therapists to monitor and assist stroke patients in achieving high-intensity upper extremity exercise in the home environment. We adopted an iterative user-centred approach, including multiple data sources and meetings with end-users and stakeholders to define the user requirements for home-based upper extremity rehabilitation using wearable motion sensors for subacute stroke patients.
We performed a requirement analysis consisting of the following steps: 1) context & groundwork; 2) eliciting requirements; 3) modelling & analysis; 4) agreeing requirements. During these steps, a pragmatic literature search, interviews and focus groups with stroke patients, physiotherapists and occupational therapists were performed. The results were systematically analysed and prioritised into "must-haves", "should-haves", and "could-haves".
We formulated 33 functional requirements: eighteen must-have requirements related to blended care (2), exercise principles (7), exercise delivery (3), exercise evaluation (4), and usability (2); ten should-haves; and five could-haves. Six movement components, including twelve exercises and five combination exercises, are required. For each exercise, appropriate exercise measures were defined.
This study provides an overview of functional requirements, required exercises, and required exercise measures for home-based upper extremity rehabilitation using wearable motion sensors for stroke patients, which can be used to develop home-based upper extremity rehabilitation interventions. Moreover, the comprehensive and systematic requirement analysis used in this study can be applied by other researchers and developers when extracting requirements for designing a system or intervention in a medical context.
远程康复系统有可能使治疗师能够监测和协助中风患者在家环境中进行高强度的上肢运动。我们采用了迭代的以用户为中心的方法,包括多个数据源,并与终端用户和利益相关者多次开会,以确定使用可穿戴运动传感器为亚急性中风患者进行家庭上肢康复的用户需求。
我们进行了需求分析,包括以下步骤:1)背景和基础工作;2)需求发掘;3)建模与分析;4)需求达成。在这些步骤中,我们进行了实用的文献检索,对中风患者、物理治疗师和职业治疗师进行了访谈和焦点小组讨论。结果被系统地分析并优先分为“必备”、“应备”和“可备”。
我们制定了 33 项功能需求:18 项必备需求与混合护理(2)、运动原则(7)、运动实施(3)、运动评估(4)和可用性(2)有关;10 项应备需求;和 5 项可备需求。需要 6 个运动组件,包括 12 个练习和 5 个组合练习。对于每个练习,都定义了适当的练习措施。
本研究提供了使用可穿戴运动传感器进行家庭上肢康复的功能需求、所需练习和所需练习措施的概述,可用于开发家庭上肢康复干预措施。此外,本研究中使用的全面和系统的需求分析可被其他研究人员和开发者用于在医学背景下提取系统或干预设计的需求。