Department of Electrical Engineering, Qatar University, Doha, Qatar.
Medical Intensive Care Unit, Hamad Medical Corporation, Doha, Qatar.
Perfusion. 2024 Nov;39(8):1558-1569. doi: 10.1177/02676591231201527. Epub 2023 Sep 14.
Current medical simulators for extracorporeal membrane oxygenation (ECMO) are expensive and rely on low-fidelity methodologies. This creates a challenge that demands a new approach to eliminate high costs and integrate with critical care environments, especially in light of the scarce resources and supplies available after the COVID-19 pandemic.
To address this challenge, we examined the current state-of-the-art medical simulators and collaborated closely with Hamad Medical Corporation (HMC), the primary healthcare provider in Qatar, to establish criteria for advancing the cutting-edge ECMO simulation. This article presents a comprehensive ambulatory high-realism and cost-effective ECMO simulator.
Over the past 3 years, we have surveyed relevant literature, gathered data, and continuously developed a prototype of the system modules and the accompanying tablet application. By doing so, we have successfully addressed the issue of cost and fidelity in ECMO simulation, providing an effective tool for medical professionals to improve their understanding and treatment of patients requiring ECMO support.
This paper will focus on presenting an overall ambulatory ECMO simulator, detailing the various sub-systems and emphasizing the modular casing of the physical components and the simulated patient monitor.
目前用于体外膜肺氧合(ECMO)的医学模拟器价格昂贵,且依赖于低保真度方法。这带来了一个挑战,需要采用新方法来消除高成本并与重症监护环境集成,特别是考虑到 COVID-19 大流行后资源和供应的稀缺。
为了解决这一挑战,我们研究了当前最先进的医学模拟器,并与卡塔尔的主要医疗保健提供商哈马德医疗公司(HMC)密切合作,为推进最先进的 ECMO 模拟制定了标准。本文介绍了一种全面的、高逼真度且具有成本效益的 ECMO 模拟器。
在过去的 3 年中,我们调查了相关文献,收集了数据,并不断开发系统模块的原型和配套的平板电脑应用程序。通过这样做,我们成功解决了 ECMO 模拟中的成本和保真度问题,为医疗专业人员提供了一种有效的工具,以提高他们对需要 ECMO 支持的患者的理解和治疗水平。
本文将重点介绍一种全面的可移动 ECMO 模拟器,详细介绍各个子系统,并强调物理组件和模拟患者监护仪的模块化外壳。