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Extracting Clinically Relevant Circular Mapping and Coronary Sinus Catheter Potentials from Atrial Simulations

机译:从心房模拟中提取与临床相关的圆形图和冠状窦导管电位

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Patient-specific model adaptation and validation requires a comparison of simulations with measured patient data. For patients suffering from atrial fibrillation, such data is mainly available as intracardiac catheter signals. In this work, we demonstrate the simulation of clinically relevant catheter data as measured using circular mapping catheters (such as Lasso~? or Orbiter~?) and coronary sinus catheters using atrial simulations on a realistic geometry. Four circular catheters are modeled using a projection technique for two distinct types of application. We show that in sinus rhythm, the choice of a distinct electrophysiological model does not impair the signal quality. Finally, wo compare simulated potentials to a real clinical measurement. In the future, with patient-specific models available, such comparisons can constitute an important interface for personalizing cardiac models.
机译:特定于患者的模型适应和验证要求将模拟与测量的患者数据进行比较。对于患有房颤的患者,此类数据主要可作为心内导管信号获得。在这项工作中,我们演示了对临床相关导管数据的模拟,这些数据是使用圆形映射导管(例如Lasso〜?或Orbiter〜?)和冠状窦导管在真实的几何结构上使用心房模拟来测量的。使用投影技术为四个不同类型的应用对四个圆形导管建模。我们表明,在窦性心律中,选择不同的电生理模型不会损害信号质量。最后,将模拟电位与实际临床测量值进行比较。将来,随着可用的患者特定模型,这种比较可以构成个性化心脏模型的重要界面。

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