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Rapid D-Affine Biventricular Cardiac Function with Polar Prediction

机译:具有极性预测功能的快速D-仿射双心室功能

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摘要

Although many solutions have been proposed for left ventricular functional analysis of the heart, right and left (bi-) ventricular function has been problematic due to the complex geometry and large motions. Biventricular function is particularly important in congenital heart disease, the most common type of birth defects. We describe a rapid interactive analysis tool for biventricular function which incorporates 1) a 3D+ time finite element model of biventricular geometry, 2) a fast prediction step which estimates an initial geometry in a polar coordinate system, and 3) a Cartesian update which penalizes deviations from affine transformations (D-Affine) from a prior. Solution times were very rapid, enabling interaction in real time using guide point modeling. The method was applied to 13 patients with congenital heart disease and compared with the clinical gold standard of manual tracing. Results between the methods showed good correlation (R2 > 0.9) and good precision (volume<17ml; mass<11g) for both chambers.
机译:尽管已经提出了许多用于心脏的左心室功能分析的解决方案,但是由于复杂的几何形状和较大的运动,右和左(双)心室功能仍然存在问题。在先天性心脏病(最常见的先天性缺陷)中,双室功能特别重要。我们描述了一种用于双心室功能的快速交互式分析工具,该工具结合了以下内容:1)双心室几何的3D +时间有限元模型; 2)估计极坐标系中初始几何的快速预测步骤; 3)补偿偏差的笛卡尔更新来自先验的仿射变换(D-Affine)。解决方案的时间非常快,可以使用指导点建模进行实时交互。该方法适用于13例先天性心脏病患者,并与手动追踪的临床金标准进行了比较。两种方法之间的结果均显示出良好的相关性(R 2

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