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Shape analysis of left ventricle using spherical harmonics functions

机译:使用球形谐波功能的左心室形状分析

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This paper presents an approach for the parameterization of 3D triangular mesh surfaces of spherical topology objects. Our approach is decomposed in two steps. The first step consists in parameterizing the surface by defining a continuous one-to-one mapping from the surface of the object to the surface of a unit sphere [10]. The optimization of initial parameterization is formulated as a constrained optimization problem. The second step consists in expanding the surface into a series of spherical harmonic functions. The new approach is illustrated with modelling the left ventricle at stress and at rest using the sphercical harmonics model and myocardial scintigraphic data. Since we are interested in measuring and analysing left ventricle model deformation between stress and rest, normalization of the spherical harmonics descriptors set is accomplished to eliminate differences due to rotation, translation and magnification.
机译:本文介绍了球形拓扑对象的3D三角网格曲面参数化的方法。我们的方法分解了两步。第一步骤通过将来自物体表面的连续一对一的映射定义到单元球的表面来参数化表面[10]。初始参数化的优化被制定为约束优化问题。第二步包括将表面扩展到一系列球形谐波函数中。使用球形谐波模型和心肌闪烁数据建模左心室和休息,用左心室建模新方法。由于我们有兴趣测量和分析应力和休息之间的左心室模型变形,因此实现了球形谐波描述符集的标准化,以消除由于旋转,平移和放大而导致的差异。

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