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Dynamic remote control through service orchestration of point-of-care and surgical devices based on IEEE 11073 SDC

机译:基于IEEE 11073 SDC的即时医疗和手术设备的服务编排进行动态远程控制

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Nowadays, the staff of modern operation rooms (ORs) and intensive care units (ICUs) has to handle increasingly complex medical devices and their user interfaces. Inconsistent and often non-sterile user interfaces lead to error-prone and slow reconfiguring actions which in the end may even harm the patient. To overcome these issues interconnected medical devices are necessary. We introduce a new concept for flexible and easy-to-use remote controls which allow to control a range of different devices from different manufacturers. Current solutions are vendor-, and mostly even device-specific and tightly coupled. The effort for manufacturers is high and the maintainability is bad. Thus, controls that can be assigned dynamically to different medical devices are rare or mostly not available. Yet such dynamic controls are badly needed to improve clinical workflows especially in ORs and ICUs. We establish such a remote control setup using the service-oriented architecture defined in the IEEE 11073 SDC standards family. The presented concept is based on dynamic service orchestration to overcome existing problems: The control device and the controlled medical device are published as independent services in the network and an additional composed service interconnects them. We successfully implemented this concept for dynamically assignable controls in a real-world demonstrator with several medical devices from more than five different manufacturers. Performance evaluations show its practicability.
机译:如今,现代化手术室(OR)和重症监护室(ICU)的员工必须处理日益复杂的医疗设备及其用户界面。不一致的用户界面(通常是未灭菌的用户界面)会导致容易出错和重新配置动作缓慢,最终甚至可能伤害患者。为了克服这些问题,需要互连的医疗设备。我们引入了灵活易用的远程控制的新概念,该远程控制允许控制来自不同制造商的一系列不同设备。当前的解决方案是特定于供应商的,并且甚至是特定于设备的并且紧密耦合。制造商的工作量很大,可维护性很差。因此,可动态分配给不同医疗设备的控件很少或几乎不可用。然而,急需这种动态控制来改善临床工作流程,尤其是在OR和ICU中。我们使用IEEE 11073 SDC标准系列中定义的面向服务的体系结构来建立这样的远程控制设置。提出的概念基于动态服务编排以克服现有问题:控制设备和受控医疗设备在网络中作为独立的服务发布,并且另外的组合服务将它们互连。我们在现实世界中的演示器中成功实现了此概念,以实现动态可分配的控件,该演示器具有来自五个以上不同制造商的几种医疗设备。绩效评估表明了其实用性。

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