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一种设计、包装和扩展儿科体重管理项目的生物设计方法:斯坦福 CORD 3.0 项目。

A Biodesign Approach to Designing, Packaging, and Scaling a Pediatric Weight Management Program: The Stanford CORD 3.0 Project.

机构信息

Stanford Solutions Science Lab, Division of General Pediatrics, Department of Pediatrics, Stanford Prevention Research Center, Department of Medicine, and Department of Epidemiology and Population Health, Stanford University, Stanford, CA, USA.

出版信息

Child Obes. 2021 Sep;17(S1):S79-S85. doi: 10.1089/chi.2021.0182.

Abstract

Different frameworks and models exist for translating and disseminating public health policies, programs, and services. This article describes an approach, grounded in the Integrate, DEsign, Assess, and Share (IDEAS) framework for digital health innovation and the Stanford Byers Center biodesign innovation process, to design a way to make effective behavioral weight control more scalable and cost-effective for low-income children with overweight and obesity, to reduce obesity and associated morbidities. The process considered the relevant stakeholders, the current market landscape, and the potential market. Solutions were designed to address provider training and resources, to have a strong foundation in behavior change methods, be sufficiently intense to produce change, involve both children and caregivers and be delivered in groups, to be less costly to deliver than current family-based behavioral programs, and to have a viable revenue model. An iterative process resulted in a potential solution that combines both technology and human affordances and addresses high fidelity delivery, needs of providers and patients, training and support, likely customers, potential revenue models, intellectual property, and regulatory issues.

摘要

不同的框架和模型可用于翻译和传播公共卫生政策、计划和服务。本文描述了一种方法,该方法基于数字健康创新的集成、设计、评估和共享(IDEAS)框架以及斯坦福拜尔斯中心生物设计创新过程,旨在设计一种方法,使有效的行为体重控制对于超重和肥胖的低收入儿童更具可扩展性和成本效益,以减少肥胖和相关的发病率。该过程考虑了相关利益相关者、当前市场格局和潜在市场。解决方案旨在解决提供者培训和资源问题,在行为改变方法方面有坚实的基础,足够强烈以产生变化,同时涉及儿童和照顾者,并以小组形式提供,比当前基于家庭的行为计划的交付成本更低,并且有可行的收入模式。迭代过程产生了一种潜在的解决方案,该方案结合了技术和人类功能,并解决了高保真度交付、提供者和患者的需求、培训和支持、潜在客户、潜在的收入模式、知识产权和监管问题。

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