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3-D Intraventricular Vector Flow Mapping Using Triplane Doppler Echo

机译:3-D使用Triplane多普勒回声静脉内载体流动映射

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We generalized and improved our clinical technique of two-dimensional intraventricular vector flow mapping (2D-/VFM) for a full-volume three-component analysis of the intraventricular blood flow (3D-iVFM). While 2D-iVFM uses three-chamber color Doppler images. 3D-iVFM is based on the clinical mode of triplane color Doppler echocardiography. As in the previous two-dimensional version, 3D-iVFM relies on mass conservation and free-slip endocar-dial boundary conditions. For sake of robustness, the optimization problem was written as a constrained least-squares problem. We tested and validated 3D-iVFM in silico through a patient-specific heart-flow CFD (computational fluid dynamics) model, as well as in vivo in one healthy volunteer. The intraventricular vortex that forms during left ventricular filling was deciphered. After further validation, 3D-iVFM could offer clinically compatible 3-D echocardiographic insights into left intraventricular hemodynamics.
机译:我们推广并改善了我们对腔内血流全体积三分分析(3D-IVFM)的二维脑室内载体流动映射(2D-/ VFM)的临床技术。 虽然2D-IVFM使用三腔彩色多普勒图像。 3D-IVFM基于Triplane Color Doppler超声心动图的临床模式。 与之前的二维版本一样,3D-IVFM依赖于大规模保护和自由滑动终端拨号边界条件。 为了稳健,优化问题被写为约束最小二乘问题。 我们通过患者特异性的心流CFD(计算流体动力学)模型以及在一个健康的志愿者中进行测试和验证了Silico的3D-IVFM。 破译左心室填充期间形成的腔内涡旋。 在进一步验证之后,3D-IVFM可以向左侧腔内血液动力学提供临床兼容的3-D超声心动图洞察。

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