用于家庭远程护理的移动遥控机器人的集成信息体系结构规范

D. Iannuzzi, A. Grant, H. Corriveau, P. Boissy, F. Michaud
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引用次数: 9

摘要

摘要目的:本研究的目的是为移动遥控机器人设计有效的集成信息架构,用于远程辅助家庭卫生保健的提供。方法:确定与远程机器人部署相关的三个角色类别,即工程师、技术集成商和卫生专业人员。间接考虑了患者和自然护理者,这是未来实地研究的一个组成部分。对每个班级的代表进行访谈,提供了每个功能的信息内容和流程。访谈记录使得从参与者那里得到反馈的UML(通用建模语言)图表的公式化成为可能。建议的信息体系结构通过一个用例场景进行了验证。结果:整合资讯架构整合了渐进式设计、人体工学整合,以及来自医学专家、护理、物理治疗、职业治疗和社工护理角度的家庭照护需求。集成的架构迭代过程促进了参与者的洞察力。用例场景评估显示了设计的健壮性。结论:远程机器人等复杂创新必须与保健服务提供需求紧密结合。集成信息架构的部署连接发展,与专家和家庭护理应用,是必要的家庭护理技术创新。它使机器人和新的健康信息设计在相同的集成架构中不断发展,同时考虑到患者的生态需求。
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Specification of an integrated information architecture for a mobile teleoperated robot for home telecare
ABSTRACT Objective: The objective of this study was to design effectively integrated information architecture for a mobile teleoperated robot in remote assistance to the delivery of home health care. Methods: Three role classes were identified related to the deployment of a telerobot, namely, engineer, technology integrator, and health professional. Patients and natural caregivers were indirectly considered, this being a component of future field studies. Interviewing representatives of each class provided the functions, and information content and flows for each function. Interview transcripts enabled the formulation of UML (Universal Modeling Language) diagrams for feedback from participants. The proposed information architecture was validated with a use-case scenario. Results: The integrated information architecture incorporates progressive design, ergonomic integration, and the home care needs from medical specialist, nursing, physiotherapy, occupational therapy, and social worker care perspectives. The integrated architecture iterative process promoted insight among participants. The use-case scenario evaluation showed the design’s robustness. Conclusions: Complex innovation such as a telerobot must coherently mesh with health-care service delivery needs. The deployment of integrated information architecture bridging development, with specialist and home care applications, is necessary for home care technology innovation. It enables continuing evolution of robot and novel health information design in the same integrated architecture, while accounting for patient ecological need.
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