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Personalization of a cardiac electromechanical model using reduced order unscented Kalman filtering from regional volumes

机译:使用区域量的降阶无味卡尔曼滤波对心脏机电模型进行个性化

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摘要

Patient-specific cardiac modeling can help in understanding pathophysiology and therapy planning. However it requires to combine functional and anatomical data in order to build accurate models and to personalize the model geometry, kinematics, electrophysiology and mechanics. Personalizing the electromechanical coupling from medical images is a challenging task. We use the Bestel-Clément-Sorine (BCS) electromechanical model of the heart, which provides reasonable accuracy with a reasonable number of parameters (14 for each ventricle) compared to the available clinical data at the organ level. We propose a personalization strategy from cine MRI data in two steps. We first estimate global parameters with an automatic calibration algorithm based on the Unscented Transform which allows to initialize the parameters while matching the volume and pressure curves. In a second step we locally personalize the contractilities of all AHA (American Heart Association) zones of the left ventricle using the reduced order unscented Kalman filtering on Regional Volumes. This personalization strategy was validated synthetically and tested successfully on eight healthy and three pathological cases.
机译:特定于患者的心脏模型可以帮助理解病理生理和治疗计划。但是,它需要结合功能和解剖数据,以建立准确的模型并个性化模型的几何形状,运动学,电生理学和力学。根据医学图像个性化机电耦合是一项艰巨的任务。我们使用心脏的Bestel-Clément-Sorine(BCS)机电模型,与器官水平的可用临床数据相比,该模型可提供合理的精度和合理数量的参数(每个心室14个)。我们分两步从电影MRI数据中提出个性化策略。我们首先使用基于无味变换的自动校准算法估算全局参数,该算法允许在匹配体积和压力曲线的同时初始化参数。在第二步中,我们使用区域体积上的降阶无味卡尔曼滤波对左心室所有AHA(美国心脏协会)区域的收缩情况进行本地化。该个性化策略经过综合验证,并在8例健康病例和3例病理病例中成功进行了测试。

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