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Weighted Least-Squares Finite Element Method for Cardiac Blood Flow Simulation with Echocardiographic Data

机译:超声心动图数据用于心脏血流模拟的加权最小二乘有限元方法

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摘要

As both fluid flow measurement techniques and computer simulation methods continue to improve, there is a growing need for numerical simulation approaches that can assimilate experimental data into the simulation in a flexible and mathematically consistent manner. The problem of interest here is the simulation of blood flow in the left ventricle with the assimilation of experimental data provided by ultrasound imaging of microbubbles in the blood. The weighted least-squares finite element method is used because it allows data to be assimilated in a very flexible manner so that accurate measurements are more closely matched with the numerical solution than less accurate data. This approach is applied to two different test problems: a flexible flap that is displaced by a jet of fluid and blood flow in the porcine left ventricle. By adjusting how closely the simulation matches the experimental data, one can observe potential inaccuracies in the model because the simulation without experimental data differs significantly from the simulation with the data. Additionally, the assimilation of experimental data can help the simulation capture certain small effects that are present in the experiment, but not modeled directly in the simulation.
机译:随着流体流量测量技术和计算机仿真方法的不断改进,人们越来越需要能够以灵活且数学上一致的方式将实验数据吸收到仿真中的数值仿真方法。这里感兴趣的问题是通过对血液中微气泡的超声成像提供的实验数据的同化来模拟左心室中的血流。之所以使用加权最小二乘有限元方法,是因为它允许以非常灵活的方式吸收数据,因此与精度较低的数据相比,精确的测量与数值解更匹配。这种方法适用于两个不同的测试问题:一个灵活的皮瓣,该皮瓣被射流和猪左心室中的血流喷射移位。通过调整模拟与实验数据的接近程度,可以观察到模型中的潜在误差,因为没有实验数据的模拟与具有数据的模拟有显着差异。此外,对实验数据的同化可以帮助模拟捕获实验中存在的某些小效果,但不能直接在模拟中建模。

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