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FPGA-in-the-loop co-simulation of reentrant arrhythmia mechanism in one dimensional (1D) ring-shaped based on FitzHugh-Nagumo model

机译:基于FitzHugh-Nagumo模型的一维(1D)环形折返性心律失常机制的FPGA环内仿真

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This paper presents the simulation of reentrant excitation-conduction of cardiac cells realized by coupling 80 active circuits in one dimensional (1D) ring-shaped based on FitzHugh-Nagumo (FHN) model. 1D ring-shaped cable model is designed using Simulink in order to simulate an action potential signal and its conduction for a hardware design by using HDL Coder to automate the model for Very High Speed Integrated Circuit (VHSIC) Hardware Description Language (VHDL) code generation. Then, the VHDL design is functionally verified on a Field Programmable Gate Array (FPGA) Xilinx Virtex-6 board using HDL Verifier proving the model through FPGA-in-the-Loop (FIL) co-simulation approach. It can then be downloaded into a target FPGA device for real-time simulations. This novel approach of prototyping cardiac reentrant excitation-conduction provides a fast and effective FPGA-based hardware implementation flow towards a stand-alone implementation to perform complex real-time simulations compared with manual HDL designs.
机译:本文介绍了基于FitzHugh-Nagumo(FHN)模型通过将80个有源电路耦合成一维(1D)环形来实现的对心脏细胞的折返激励传导的仿真。一维环形电缆模型是使用Simulink设计的,目的是通过使用HDL Coder自动化用于超高速集成电路(VHSIC)硬件描述语言(VHDL)代码生成的模型来模拟动作电位信号及其对硬件设计的传导。然后,使用HDL Verifier在现场可编程门阵列(FPGA)Xilinx Virtex-6板上对VHDL设计进行功能验证,从而通过FPGA在环(FIL)协同仿真方法证明该模型。然后可以将其下载到目标FPGA器件中以进行实时仿真。与人工HDL设计相比,这种新颖的心脏折返激励传导原型设计方法提供了一种快速有效的基于FPGA的硬件实现流程,朝着独立实现的方向执行复杂的实时仿真。

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