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Three-dimensional organ modeling based on deformable surfaces applied to radio-oncology

机译:基于可变形表面的三维器官建模应用于放射肿瘤学

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This paper describes a method based on an energy minimizing deformable model applied to the 3D biomechanical modeling of a set of organs considered as regions of interest (ROI) for radiotherapy. The initial model consists of a quadratic surface that is deformed to the exact contour of the ROI by means of the physical properties of a mass-spring system. The exact contour of each ROI is first obtained using a geodesic active contour model. The ROI is then parameterized by the vibration modes resulting from the deformation process. Once each structure has been defined, the method provides a 3D global model including the whole set of ROIs. This model allows one to describe statistically the most significant variations among its structures. Statistical ROI variations among a set of patients or through time can be analyzed. Experimental results are presented using the pelvic zone to simulate anatomical variations among structures and its application in radiotherapy treatment planning.
机译:本文介绍了一种基于能量最小化可变形模型的方法,该模型应用于3D生物力学建模的一组器官中,这些器官被视为放射治疗的目标区域(ROI)。初始模型由一个二次曲面组成,该二次曲面通过质量弹簧系统的物理特性变形为ROI的精确轮廓。首先使用测地线活动轮廓模型获得每个ROI的精确轮廓。然后通过变形过程产生的振动模式对ROI进行参数化。一旦定义了每个结构,该方法就会提供一个3D全局模型,其中包括整个ROI集。这种模型允许人们从统计学上描述其结构之间最重要的变化。可以分析一组患者之间或整个时间的统计ROI变化。提出了使用骨盆区域模拟结构之间的解剖变化及其在放射治疗计划中的应用的实验结果。

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