Suppr超能文献

一种用于多发性硬化症患者的精准医疗工具(开放式MS生物筛查):以人为本的设计与开发。

A Precision Medicine Tool for Patients With Multiple Sclerosis (the Open MS BioScreen): Human-Centered Design and Development.

作者信息

Schleimer Erica, Pearce Jennifer, Barnecut Andrew, Rowles William, Lizee Antoine, Klein Arno, Block Valerie J, Santaniello Adam, Renschen Adam, Gomez Refujia, Keshavan Anisha, Gelfand Jeffrey M, Henry Roland G, Hauser Stephen L, Bove Riley

机构信息

Department of Neurology, UCSF Weill Institute for Neurosciences, San Francisco, CA, United States.

Plain Language Health, San Francisco, CA, United States.

出版信息

J Med Internet Res. 2020 Jul 6;22(7):e15605. doi: 10.2196/15605.

Abstract

BACKGROUND

Patients with multiple sclerosis (MS) face several challenges in accessing clinical tools to help them monitor, understand, and make meaningful decisions about their disease course. The University of California San Francisco MS BioScreen is a web-based precision medicine tool initially designed to be clinician facing. We aimed to design a second, openly available tool, Open MS BioScreen, that would be accessible, understandable, and actionable by people with MS.

OBJECTIVE

This study aimed to describe the human-centered design and development approach (inspiration, ideation, and implementation) for creating the Open MS BioScreen platform.

METHODS

We planned an iterative and cyclical development process that included stakeholder engagement and iterative feedback from users. Stakeholders included patients with MS along with their caregivers and family members, MS experts, generalist clinicians, industry representatives, and advocacy experts. Users consisted of anyone who wants to track MS measurements over time and access openly available tools for people with MS. Phase I (inspiration) consisted of empathizing with users and defining the problem. We sought to understand the main challenges faced by patients and clinicians and what they would want to see in a web-based app. In phase II (ideation), our multidisciplinary team discussed approaches to capture, display, and make sense of user data. Then, we prototyped a series of mock-ups to solicit feedback from clinicians and people with MS. In phase III (implementation), we incorporated all concepts to test and iterate a minimally viable product. We then gathered feedback through an agile development process. The design and development were cyclical-many times throughout the process, we went back to the drawing board.

RESULTS

This human-centered approach generated an openly available, web-based app through which patients with MS, their clinicians, and their caregivers can access the site and create an account. Users can enter information about their MS (basic level as well as more advanced concepts), visualize their data longitudinally, access a series of algorithms designed to empower them to make decisions about their treatments, and enter data from wearable devices to encourage realistic goal setting about their ambulatory activity. Agile development will allow us to continue to incorporate precision medicine tools, as these are validated in the clinical research arena.

CONCLUSIONS

After engaging intended users into the iterative human-centered design of the Open MS BioScreen, we will now monitor the adaptation and dissemination of the tool as we expand its functionality and reach. The insights generated from this approach can be applied to the development of a number of self-tracking, self-management, and user engagement tools for patients with chronic conditions.

摘要

背景

多发性硬化症(MS)患者在使用临床工具来帮助他们监测、理解并对自身疾病进程做出有意义的决策方面面临诸多挑战。加利福尼亚大学旧金山分校的MS生物筛查是一个基于网络的精准医疗工具,最初是为临床医生设计的。我们旨在设计第二个可供公众使用的工具——开放式MS生物筛查,以便MS患者能够访问、理解并使用该工具。

目的

本研究旨在描述创建开放式MS生物筛查平台的以人为本的设计和开发方法(灵感、构思和实施)。

方法

我们计划了一个迭代循环的开发过程,包括与利益相关者的参与以及来自用户的迭代反馈。利益相关者包括MS患者及其护理人员和家庭成员、MS专家、普通临床医生、行业代表和倡导专家。用户包括任何想要长期跟踪MS测量数据并访问面向MS患者的公开可用工具的人。第一阶段(灵感阶段)包括与用户产生共情并定义问题。我们试图了解患者和临床医生面临的主要挑战以及他们希望在基于网络的应用程序中看到什么。在第二阶段(构思阶段),我们的多学科团队讨论了捕获、显示和理解用户数据的方法。然后,我们制作了一系列原型来征求临床医生和MS患者的反馈。在第三阶段(实施阶段),我们整合了所有概念来测试和迭代一个最小可行产品。然后,我们通过敏捷开发过程收集反馈。在整个过程中,设计和开发是循环进行的——很多时候,我们都要重新开始。

结果

这种以人为本的方法产生了一个可供公众使用的基于网络的应用程序,MS患者、他们的临床医生和护理人员可以通过该程序访问该网站并创建账户。用户可以输入有关其MS的信息(基础层面以及更高级的概念),纵向可视化他们的数据,访问一系列旨在帮助他们做出治疗决策的算法,并输入可穿戴设备的数据以鼓励设定关于其日常活动的现实目标。敏捷开发将使我们能够继续整合精准医疗工具,因为这些工具在临床研究领域已得到验证。

结论

在让目标用户参与开放式MS生物筛查的迭代式以人为本设计之后,我们现在将在扩展其功能和覆盖范围的同时监测该工具的适应性和传播情况。这种方法所产生的见解可应用于为慢性病患者开发一系列自我跟踪、自我管理和用户参与工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/270e/7381029/b9e73ddde4df/jmir_v22i7e15605_fig1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验