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Shape Constrained Mesh Editing For Delineating Anatomical Structures in Volumetric Datasets

机译:形状约束网格编辑用于描绘体积数据集中的解剖结构

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Organ delineation from volumetric dataset is often encountered problem in medical imaging. Numerous 3D polygonal surface mesh model based segmentation algorithms have been reported in this area. These algorithms aim for a fully automated solution for segmenting anatomical structures in volumetric image datasets. But attraction to false boundaries results in inaccurate segmentation, which can happen because of poor model initialization or weak image feature response at correct locations. To be acceptable in clinical practice, it is crucial for a segmentation approach to include the possibility of integrating input from the user when automatic segmentation fails to provide the desired accuracy. This work presents a new 3D triangular surface mesh editing technique to correct the results of automatic segmentation. The method directly projects subset of mesh vertices that are closest to a user drawn line, representing the true boundary of the anatomical structures. Its neighboring vertices that are within user defined depth get deformed based on shape constraints resulting in a smooth edited surface. The shape constraint is formulated to maintain the distribution of the vertices in the region of edited mesh in correspondence with the initial surface model. The result of the study shows that the manually edited surface results in accurate (1.52+/- 0.5mm) anatomical boundary on the edited image plane while preserving the shape of the surface in the neighboring region.
机译:来自体积数据集的器官描绘通常遇到医学成像中的问题。该区域报道了许多3D多边形表面网格模型的基于分段算法。这些算法旨在为在体积图像数据集中分割解剖结构的全自动解决方案。但是对假边界的吸引力导致不准确的分割,这可能发生,因为在正确的位置处于较差的模型初始化或弱图像特征响应。在临床实践中可以接受,对于分割方法来说,包括在自动分割未能提供所需的精度时从用户集成到用户的可能性是至关重要的。这项工作介绍了一种新的3D三角形网状网格编辑技术,可以纠正自动分割结果。该方法直接将最接近用户绘制线的网格顶点的子集投影,表示解剖结构的真正边界。其在用户定义深度内的相邻顶点基于形状约束变形,从而产生平滑的综合表面。配方约束被配制成维持与初始表面模型对应的编辑网格区域中的顶点的分布。该研究的结果表明,手动编辑的表面导致编辑图像平面上的准确(1.52 +/- 0.5mm)解剖边界,同时保留相邻区域中的表面的形状。

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