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Integrating Geometric and Biomechanical Models of a Liver Tumour for Cryosurgery Simulation

机译:集成用于冷冻手术模拟的肝肿瘤的几何和生物力学模型

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摘要

In this paper, we present a 3D reconstruction approach of a liver tumour model from a sequence of 2D MR parallel cross-sections, and the integration of this reconstructed 3D model with a mechanical tissue model. The reconstruction algorithm uses shape-based interpolation and extrapolation. While interpolation generates intermediate slices between every pair of adjacent input slices, extrapolation performs a smooth closing of the external surface of the model. Interpolation uses morphological morphing, while extrapolation is based on smoothness surface constraints. Local surface irregularities are further smoothed with Taubin's surface fairing algorithm. Since tumour models are to be used in a planning and simulation system of image-guided cryosurgery, a mechanical model based on a non-linear tensor-mass algorithm was integrated with the tumour geometry. Integration allows the computation of fast deformations and force feedback in the process of cryoprobe insertion.
机译:在本文中,我们提出了一种从2D MR平行横截面序列中提取肝脏肿瘤模型的3D重建方法,并将此重建的3D模型与机械组织模型集成在一起。重建算法使用基于形状的内插和外推。插值会在每对相邻的输入切片之间生成中间切片,而外推则可以平滑关闭模型的外表面。插值使用形态学变形,而插值基于平滑表面约束。使用Taubin的表面光顺算法可以进一步平滑局部表面不规则性。由于肿瘤模型将在图像引导的冷冻手术的计划和仿真系统中使用,因此将基于非线性张量质量算法的机械模型与肿瘤几何形状集成在一起。集成可以计算冷冻探头插入过程中的快速变形和力反馈。

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