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Modeling method and system of the comprehensive patient-specific heart

机译:综合患者专用心脏的建模方法和系统

摘要

A method and system for patient-specific modeling of the whole heart anatomy, dynamics, hemodynamics, and fluid structure interaction from 4D medical image data is disclosed. The anatomy and dynamics of the heart are determined by estimating patient-specific parameters of a physiological model of the heart from the 4D medical image data for a patient. The patient-specific anatomy and dynamics are used as input to a 3D Navier-Stokes solver that derives realistic hemodynamics, constrained by the local anatomy, along the entire heart cycle. Fluid structure interactions are determined iteratively over the heart cycle by simulating the blood flow at a given time step and calculating the deformation of the heart structure based on the simulated blood flow, such that the deformation of the heart structure is used in the simulation of the blood flow at the next time step. The comprehensive patient-specific model of the heart representing anatomy, dynamics, hemodynamics, and fluid structure interaction can be used for non-invasive assessment and diagnosis of the heart, as well as virtual therapy planning and cardiovascular disease management. Parameters of the comprehensive patient-specific model are changed or perturbed to simulate various conditions or treatment options, and then the patient specific model is recalculated to predict the effect of the conditions or treatment options.
机译:公开了一种用于从4D医学图像数据对全心脏解剖结构,动力学,血液动力学和流体结构相互作用进行患者特异性建模的方法和系统。通过根据患者的4D医学图像数据估算心脏的生理模型的患者特定参数,可以确定心脏的解剖结构和动力学。特定于患者的解剖结构和动力学用作3D Navier-Stokes解算器的输入,该求解器可在整个心动周期中获得受局部解剖结构约束的逼真的血液动力学。通过在给定的时间步长模拟血流并根据模拟的血流计算心脏结构的变形,可以反复确定心动周期内的流体结构相互作用,从而将心脏结构的变形用于模型的模拟中。下一步骤的血液流动。代表解剖结构,动力学,血液动力学和流体结构相互作用的综合性患者特定心脏模型可用于心脏的非侵入性评估和诊断,以及虚拟治疗计划和心血管疾病管理。更改或扰动综合患者特定模型的参数,以模拟各种情况或治疗选择,然后重新计算患者特定模型以预测条件或治疗选择的效果。

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