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Towards Precision Behavioral Medicine with IoT: Iterative Design and Optimization of a Self-Management Tool for Type 1 Diabetes

机译:对IOT的精确行为医学:1型糖尿病的自我管理工具的迭代设计和优化

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Internet of Things (IoT) technologies are revolutionizing healthcare, providing many so-called "smart health" opportunities, ranging from remote monitoring of health statistics to self-management of chronic conditions. This paper describes an IoT-based approach to the management intervention of type 1 diabetes (T1D), which is a major chronic disease with significant economic and social impact worldwide. Specifically, we focus on the structure, functionality, and development process of MyDay, which is an IoT-based, multi-faceted self-management problem solving tool for pediatric T1D patients. By leveraging IoT technologies, MyDay can connect with various devices to integrate traditionally paper-documented physiological data (e.g., blood glucose values) in real-time with psychosocial and contextual data, such as mood, stress, and social activities. By integrating relevant-but heterogeneous-data sources, MyDay can create personalized feedback for self-awareness of factors associated with diabetes self-management patterns and promote data sharing and problem solving. Iterative user-centered design cycles were used throughout the development of MyDay to document and/or troubleshoot feasibility and technical stability, optimize feedback for effective health communication through data visualization, identify barriers to app use, optimize assessment, and evaluate capability of the app as a problem solving tool. Each iterative design round identified technical and design issues that were addressed in subsequent rounds by incorporating user input and expertise. An in-vivo case study and one-month pilot study of the system indicated high feasibility and use of our IoT-based MyDay tool.
机译:事物互联网(物联网)技术正在彻底改变医疗保健,提供许多所谓的“智能健康”机会,从远程监测健康统计到慢性条件的自我管理。本文介绍了基于IOT的管理干预型糖尿病(T1D)的方法,这是一个主要的慢性病,​​全世界具有重要的经济和社会影响。具体而言,我们专注于Myday的结构,功能和开发过程,即儿科T1D患者的基于物联网的多方面的自我管理问题解决工具。通过利用物联网技术,MYDAGE可以与各种设备连接,以实时地将传统文献文献的生理数据(例如,血糖值)与心理社会和语境数据相容,例如情绪,压力和社交活动。通过整合相关但异构数据来源,Myday可以为与糖尿病自我管理模式相关的因素的个性化反馈创造个性化反馈,并促进数据共享和解决问题。迭代用户中心的设计周期是在Myday的开发过程中,通过数据可视化优化有效健康通信的反馈,确定应用程序使用的障碍,优化评估和评估应用程序的能力的反馈解决问题的工具。通过合并用户输入和专业知识,每个迭代设计轮次确定在随后的轮次中解决的技术和设计问题。体内案例研究和系统的一个月试验研究表明了我们基于物联网的Myday工具的高可行性和使用。

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