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MATCHING 3-D ANATOMICAL SURFACES WITH NON-RIGID DEFORMATIONS USING OCTREE-SPLINES

机译:使用八次样条匹配具有非刚性变形的3D原子表面

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This paper presents a new method for determining the minimal non-rigid deformation between two 3-D surfaces, such as those which describe anatomical structures in 3-D medical images. Although we match surfaces, we represent the deformation as a volumetric transformation. Our method performs a least squares minimization of the distance between the two surfaces of interest. To quickly and accurately compute distances between points on the two surfaces, we use a precomputed distance map represented using an octree spline whose resolution increases near the surface. To quickly and robustly compute the deformation, we use a second octree spline to model the deformation function. The coarsest level of the deformation encodes the global (e.g., affine) transformation between the two surfaces, while finer levels encode smooth local displacements which bring the two surfaces into closer registration. We present experimental results on both synthetic and real 3-D surfaces. [References: 57]
机译:本文提出了一种确定两个3D表面之间最小非刚性变形的新方法,例如描述3D医学图像中解剖结构的表面。尽管我们匹配曲面,但我们将变形表示为体积变换。我们的方法对两个目标表面之间的距离进行最小二乘最小化。为了快速准确地计算两个曲面上的点之间的距离,我们使用预先计算的距离图,该图由八叉树样条表示,其分辨率在曲面附近增加。为了快速而可靠地计算变形,我们使用第二个八叉树样条曲线对变形函数进行建模。变形的最粗糙级别对两个表面之间的全局(例如仿射)变换进行编码,而更精细的级别对使两个表面更接近对齐的平滑局部位移进行编码。我们在合成和真实的3-D表面上都提供了实验结果。 [参考:57]

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