Surface reconstruction from tomography data

R. El-Daccache, R. Noumeir
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引用次数: 0

Abstract

We propose a method to reconstruct the surface of a three-dimensional (3D) object from its volume. We use an active surface model which is a 3D generalization of the basic two-dimensional (2D) model. The model is an elastic surface that is deformed under the action of internal and external forces. The internal forces model the smoothness constraints while the external forces model the image constraints. In our case, the image constraints are 3D detected edges obtained using the Zucker and Hummel (1981) operator. The finite difference method is used to solve the energy-minimization problem for a surface. The proposed method is used for the segmentation of the patient body from the tomography reconstruction in nuclear medicine. The body surface in nuclear medicine is very important in order to model the attenuation of the photons.
从断层扫描数据重建表面
我们提出了一种从三维物体的体积重构其表面的方法。我们使用的活动曲面模型是基本二维(2D)模型的三维泛化。模型是在内力和外力作用下发生变形的弹性曲面。内力对平滑约束进行建模,外力对图像约束进行建模。在我们的例子中,图像约束是使用Zucker和Hummel(1981)算子获得的3D检测边缘。采用有限差分法求解曲面的能量最小化问题。该方法用于核医学断层扫描重建中患者身体的分割。在核医学中,为了模拟光子的衰减,体表是非常重要的。
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