首页> 外文会议>Proceedings of Geometric Modeling and Processing 2004(GMP 2004); 20040411-13; Beijing(CN) >Improved Geometric Constraints on Deformable Surface Model for Volumetric Segmentation
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Improved Geometric Constraints on Deformable Surface Model for Volumetric Segmentation

机译:改进的几何变形对可变形曲面模型的体积分割

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In this paper, we present a deformable surface geometric model for segmenting targets from volumetric data. This model deforms under external forces only, and changes its geometry and topology by using improved geometric constraints. External forces are calculated by using the sum of inflation forces, whose contributions take place on internal regions of objects, and the gradient forces, which play a key role when the surface is near the boundary of objects. A new set of geometric constraints is proposed which includes constraints on vertices, edges and faces. Once a constraint is broken, the corresponding topological transformation will occur to keep the geometric and topological integrity of the surface unaltered. We demonstrate that our model can efficiently segment complex anatomic structures from medical 3D images, and achieve the requirements of accuracy and geometry for image segmentation.
机译:在本文中,我们提出了一种可变形的表面几何模型,用于从体积数据中分割目标。该模型仅在外力作用下变形,并通过使用改进的几何约束来更改其几何形状和拓扑。外力是通过使用充气力和梯度力的总和来计算的,其作用在对象的内部区域上,而梯度力则在表面靠近对象的边界时起关键作用。提出了一组新的几何约束,其中包括对顶点,边和面的约束。一旦打破约束,将发生相应的拓扑变换,以保持表面的几何和拓扑完整性不变。我们证明了我们的模型可以有效地从医学3D图像中分割复杂的解剖结构,并达到图像分割的精度和几何要求。

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