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A Statistical Physiological-Model-Constrained Framework for Computational Imaging of Subject-Specific Volumetric Cardiac Electrophysiology Using Optical Imaging and MRI Data

机译:统计生理模型约束框架的光学成像和核磁共振成像数据的特定对象的体积心脏电生理的计算成像。

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Computational imaging of personalized cardiac electrophysiology has attracted increasing research interest because of its clinical relevance in aiding in the diagnosis and prediction of cardiac electrical malfunctions of individual subjects. We have developed a statistical physiological-model-constrained framework that, rather than delivering a personalized cardiac electrophysiological model with customized parameters, uses simple standard electrophysiological models as constraints and produces maximum a posteriori estimation of three-dimensionally distributed transmembrane potential (TMP) dynamics inside the ventricular myocardium of individual subjects [1]. Taking part in 2010 Cardiac Electrophysiological Simulation Challenge (CESC'10), we modify this framework to use epicardial optical mapping data to estimate subject-specific TMP dynamics inside the 3D myocardium. Results of estimated dynamics are compared to the simulations by the same electrophysiological model with standard or adjusted parameters. As shown, while it is rather challenging to personalize the parameters of a cardiac electrophysiological model for the entire 3D myocardium, because of the drastically simplified model structure and limited subject's data, the presented approach of TMP estimation is able to computationally reproduce subject-specific electrical functions inside the 3D myocardium with simple standard model as constraints.
机译:个性化心脏电生理的计算成像已经吸引了越来越多的研究兴趣,因为它在帮助诊断和预测个体受试者的心脏电功能异常方面具有临床意义。我们已经开发了一种统计生理模型约束框架,该框架没有提供具有自定义参数的个性化心脏电生理模型,而是使用简单的标准电生理模型作为约束条件,并在内部产生了三维分布的跨膜电位(TMP)动力学的最大后验估计个体受试者的心室心肌[1]。参加2010年心脏电生理模拟挑战赛(CESC'10),我们修改了此框架以使用心外膜光学测绘数据来估计3D心肌内部特定于受试者的TMP动态。通过具有标准或调整参数的相同电生理模型,将估计的动力学结果与仿真结果进行比较。如图所示,虽然个性化整个3D心肌的心脏电生理模型的参数颇具挑战性,但由于模型结构的极大简化和受检者数据的限制,所提出的TMP估算方法能够以计算方式再现受检者特定的电以简单的标准模型为约束,在3D心肌内发挥功能。

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