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Construction of Left Ventricle 3D Shape Atlas from Cardiac MRI

机译:通过心脏MRI构建左心室3D形状图集

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In this paper, we present an effective algorithm to construct a 3D shape atlas for the left ventricle of heart from cardiac Magnetic Resonance Image data. We derive a framework that creates a 3D object mesh from a 2D stack of contours, based on geometry processing algorithms and a semi-constrained deformation method. The geometry processing methods include decimation, detail preserved smoothing and isotropic remeshing, and they ensure high-quality meshes. The deformation method generates subject-specific 3D models, but with global point correspondences. Once we extract 3D meshes from the sample data, generalized Procrustes analysis and Principal Component Analysis are then applied to align them together and model the shape variations. We demonstrate the algorithm via a set of experiments on a population of cardiac MRI scans. We also present modes of variation from the computed atlas for the control population, to show the shape and motion variability.
机译:在本文中,我们提出了一种有效的算法,可根据心脏磁共振图像数据为心脏左心室构建3D形状图集。我们基于几何处理算法和半约束变形方法,派生了一个从2D轮廓堆栈创建3D对象网格的框架。几何处理方法包括抽取,保留细节的平滑和各向同性的重网格化,并确保高质量的网格。变形方法生成特定于对象的3D模型,但具有全局点对应关系。从样本数据中提取3D网格后,将应用广义Procrustes分析和主成分分析将它们对齐并建模形状变化。我们通过一系列针对心脏MRI扫描的实验证明了该算法。我们还提供了针对控制人群的计算图集的变异模式,以显示形状和运动变异性。

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