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互联健康系统的病理生理基础。

Pathophysiologic Basis of Connected Health Systems.

机构信息

The MITRE Corporation, Windsor Mill, MD, United States.

The Greystone Group, Inc, Lanham, MD, United States.

出版信息

J Med Internet Res. 2023 Sep 21;25:e42405. doi: 10.2196/42405.

Abstract

Since the start of the COVID-19 pandemic, there has been a rapid transition to telehealth across the United States, primarily involving virtual clinic visits. Additionally, the proliferation of consumer technologies related to health reveals that for many people health and care in the contemporary world extends beyond the boundaries of a clinical interaction and includes sensors and devices that facilitate health in personal environments. The ideal connected environment is networked and intelligent, personalized to promote health and prevent disease. The combination of sensors, devices, and intelligence constitutes a connected health system around an individual that is optimized to improve and maintain health, deliver care, and predict and reduce risk of illness. Just as modern medicine uses the pathophysiology of disease as a framework for the basis of pharmacologic therapy, a similar clinically reasoned approach can be taken to organize and architect technological elements into therapeutic systems. In this work, we introduce a systematic methodology for the design of connected health systems grounded in the pathophysiologic basis of disease. As the digital landscape expands with the ubiquity of health devices, it is pivotal to enable technology-agnostic clinical reasoning to guide the integration of technological innovations into systems of health and care delivery that extend beyond the boundaries of a clinical interaction. Applying clinical reasoning in a repeatable and systematic way to organizing technology into therapeutic systems can yield potential benefits including expanding the study of digital therapeutics from individual devices to networked technologies as therapeutic interventions; empowering physicians who are not technological experts to still play a significant role in using clinical reasoning for architecting therapeutic networks of sensors and devices; and developing platforms to catalog and share combinations of technologies that can form therapeutic networks and connected health systems.

摘要

自 COVID-19 大流行开始以来,美国迅速转向远程医疗,主要涉及虚拟诊所就诊。此外,与健康相关的消费者技术的普及表明,对于许多人来说,当代世界的健康和护理不仅限于临床互动的范围,还包括促进个人环境中健康的传感器和设备。理想的互联环境是网络化和智能化的,个性化以促进健康和预防疾病。传感器、设备和智能的组合构成了围绕个体的互联健康系统,旨在改善和维持健康、提供护理以及预测和减少疾病风险。就像现代医学将疾病的病理生理学用作药物治疗基础的框架一样,我们可以采取类似的临床推理方法,将技术元素组织和构建为治疗系统。在这项工作中,我们介绍了一种基于疾病病理生理学基础的互联健康系统设计的系统方法。随着健康设备的普及,数字环境不断扩展,至关重要的是要能够实现与技术无关的临床推理,以将技术创新整合到超越临床互动范围的健康和护理交付系统中。以可重复和系统的方式将临床推理应用于将技术组织到治疗系统中,可以带来潜在的好处,包括将数字治疗的研究从单个设备扩展到作为治疗干预措施的网络技术;使不是技术专家的医生仍然能够发挥重要作用,通过临床推理为传感器和设备的治疗网络架构发挥作用;并开发平台来编目和共享可形成治疗网络和互联健康系统的技术组合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/78f9/10557002/9014122d915c/jmir_v25i1e42405_fig1.jpg

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