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三维球谐模型的表面对齐:在心脏磁共振成像分析中的应用

Surface alignment of 3D spherical harmonic models: application to cardiac MRI analysis.

作者信息

Huang Heng, Shen Li, Zhang Rong, Makedon Fillia, Hettleman Bruce, Pearlman Justin

机构信息

Department of Computer Science, Dartmouth College, Hanover, NH 03755, USA.

出版信息

Med Image Comput Comput Assist Interv. 2005;8(Pt 1):67-74. doi: 10.1007/11566465_9.

Abstract

The spherical harmonic (SPHARM) description is a powerful surface modeling technique that can model arbitrarily shaped but simply connected 3D objects and has been used in many applications in medical imaging. Previous SPHARM techniques use the first order ellipsoid for establishing surface correspondence and aligning objects. However, this first order information may not be sufficient in many cases; a more general method for establishing surface correspondence would be to minimize the mean squared distance between two corresponding surfaces. In this paper, a new surface matching algorithm is proposed for 3D SPHARM models to achieve this goal. This algorithm employs a useful rotational property of spherical harmonic basis functions for a fast implementation. Applications of medical image analysis (e.g., spatio-temporal modeling of heart shape changes) are used to demonstrate this approach. Theoretical proofs and experimental results show that our approach is an accurate and flexible surface correspondence alignment method.

摘要

球谐(SPHARM)描述是一种强大的表面建模技术,它可以对任意形状但简单连通的三维物体进行建模,并且已在医学成像的许多应用中得到使用。先前的球谐技术使用一阶椭球体来建立表面对应关系并对齐物体。然而,在许多情况下,这种一阶信息可能并不足够;建立表面对应关系的一种更通用方法是使两个对应表面之间的均方距离最小化。本文提出了一种用于三维球谐模型的新表面匹配算法以实现这一目标。该算法利用球谐基函数的一种有用旋转特性来实现快速实现。医学图像分析的应用(例如,心脏形状变化的时空建模)被用于证明这种方法。理论证明和实验结果表明,我们的方法是一种准确且灵活的表面对应对齐方法。

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