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首页> 外文期刊>Journal of magnetic resonance imaging: JMRI >Improving computation of cardiovascular relative pressure fields from velocity MRI.
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Improving computation of cardiovascular relative pressure fields from velocity MRI.

机译:通过速度MRI改善心血管相对压力场的计算。

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PURPOSE: To evaluate a multigrid-based solver for the pressure Poisson equation (PPE) with Galerkin coarsening, which works directly on the specified domain, for the computation of relative pressure fields from velocity MRI data. MATERIALS AND METHODS: We compared the proposed structure-defined Poisson solver to other popular Poisson solvers working on unmodified rectangular and modified quasirectangular domains using synthetic and in vitro phantoms in which the mathematical solution of the pressure field is known, as well as on in vivo MRI velocity measurements of aortic blood flow dynamics. RESULTS: All three PPE solvers gave accurate results for convex computational domains. Using a rectangular or quasirectangular domain on a more complicated domain, like a c-shape, revealed a systematic underestimation of the pressure amplitudes, while the proposed PPE solver, working directly on the specified domain, provided accurate estimates of the relative pressure fields. CONCLUSION: Popular iterative approaches with quasirectangular computational domains can lead to significant systematic underestimation of the pressure amplitude. We suggest using a multigrid-based PPE solver with Galerkin coarsening, which works directly on the structure-defined computational domain. This solver provides accurate estimates of the relative pressure fields for both simple and complex geometries with additional significant improvements with respect to execution speed.
机译:目的:使用Galerkin粗化评估基于泊松方程(PPE)的基于多网格的求解器,该求解器直接在指定域上运行,以便根据速度MRI数据计算相对压力场。材料和方法:我们将拟议的结构定义的泊松求解器与其他流行的泊松求解器进行了比较,这些泊松求解器使用已知压力场的数学解以及体内的合成体和体外体模,对未修饰的矩形域和修饰的拟矩形域进行了研究MRI速度测量主动脉血流动力学。结果:所有三个PPE求解器都给出了凸计算域的准确结果。在更复杂的域(如C形)上使用矩形或准矩形域,揭示了系统对压力幅度的低估,而建议的PPE求解器直接在指定域上工作,提供了相对压力场的准确估计。结论:采用准矩形计算域的流行迭代方法可能导致压力幅值的明显系统低估。我们建议使用基于Galerkin粗化的基于多网格的PPE求解器,该求解器直接在结构定义的计算域上工作。该求解器提供了简单和复杂几何形状的相对压力场的准确估计,并在执行速度方面进行了其他重大改进。

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