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Hybrid automata models of cardiac ventricular electrophysiology for real-time computational applications

机译:用于实时计算应用的心室电生理学混合自动机模型

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Virtual heart models have been proposed for closed loop validation of safety-critical embedded medical devices, such as pacemakers. These models must react in real-time to off-the-shelf medical devices. Real-time performance can be obtained by implementing models in computer hardware, and methods of compiling classes of Hybrid Automata (HA) onto FPGA have been developed. Models of ventricular cardiac cell electrophysiology have been described using HA which capture the complex nonlinear behavior of biological systems. However, many models that have been used for closed-loop validation of pacemakers are highly abstract and do not capture important characteristics of the dynamic rate response. We developed a new HA model of cardiac cells which captures dynamic behavior and we implemented the model in hardware. This potentially enables modeling the heart with over 1 million dynamic cells, making the approach ideal for closed loop testing of medical devices.
机译:已经提出了虚拟心模型,用于闭环验证安全关键的嵌入式医疗设备,如起搏器。这些型号必须实时对现成的医疗设备进行反应。通过在计算机硬件中实现模型可以获得实时性能,并且已经开发出在FPGA上编译混合自动机(HA)的类别的方法。使用HA描述了室心性心脏细胞电生理学的模型,该HA捕获了生物系统的复杂非线性行为。然而,已经用于起搏器闭环验证的许多模型是高度摘要的,并且不会捕获动态率响应的重要特征。我们开发了一种新的HA模型的心脏细胞,捕获动态行为,我们在硬件中实现了模型。这可能使得能够用超过100万个动态电池进行建模,使得该方法是医疗设备的闭环测试的理想选择。

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