迈向以器官为中心的安全网络化医疗监控系统的组件化发展

Woochul Kang, Po-Liang Wu, M. Rahmaniheris, L. Sha, Richard B. Berlin, J. Goldman
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引用次数: 7

摘要

通过利用网络连接性和互操作性,医疗设备之间的交互能力越来越强,这对患者安全和医疗服务的有效性有很大的好处。然而,通过网络对医疗设备进行临时集成会大大增加系统的复杂性,使系统更容易受到潜在错误和安全隐患的影响。在本文中,我们解决了这个问题,并介绍了一种以器官为中心的成分开发方法。在我们的方法中,医疗设备以网络故障安全的方式根据器官特异性生理组成半自主集群。每个以器官为中心的集群捕获感知和控制的共同设备交互模式,以支持人体生理学。这些经过正式验证的以器官为中心的体系结构模式库可以快速安全地组合专门用于特定医疗场景的监督控制器。使用气道激光手术作为一个具有实际重要性的案例研究,我们在Simulink的模型驱动开发框架下证明了我们的方法的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards organ-centric compositional development of safe networked supervisory medical systems
Medical devices are increasingly capable of interacting with each other by leveraging network connectivity and interoperability, promising a great benefit for patient safety and effectiveness of medical services. However, ad-hoc integration of medical devices through networking can significantly increase the complexity of the system and make the system more vulnerable to potential errors and safety hazards. In this paper, we address this problem and introduce an organ-centric compositional development approach. In our approach, medical devices are composed into semi-autonomous clusters according to organ-specific physiology in a network-fail-safe manner. Each organ-centric cluster captures common device interaction patterns of sensing and control to support human physiology. The library of these formally verified organ-centric architectural patterns enables rapid and safe composition of supervisory controllers, which are specialized for specific medical scenarios. Using airway-laser surgery as a case study of practical importance, we demonstrate the feasibility of our approach under Simulink's model-driven development framework.
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