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Particle-Based Deformable Modeling with Pre-computed Surface Data in Real-Time Surgical Simulation

机译:基于颗粒的可变形建模,具有预计算机数据的实时手术模拟

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Particle-based method has proven to be a powerful tool in real-time surgical simulation for its simplicity and high efficiency. However, it is difficult to model the high-resolution surface deformation details with standard particle-based techniques. In this paper, we propose a novel approach to model the elastic behaviors of organs with complex surfaces in surgical environment. The basic idea of our approach is to introduce an auxiliary surface mesh into the existing particle-based simulation framework, and utilize the pre-computed surface data with experimental biomechanics parameters for deformable modeling. The high-resolution organ deformations and the low-resolution soft tissue deformations are treated in surface-based and particle-based methods respectively. Our method provides an efficient and physical valid way to model the organ deformation details for particle-based surgery simulation techniques without using adaptive particle methods, as shown in our experiment results-
机译:基于粒子的方法已被证明是实时手术模拟中的强大工具,其简单性和高效率。然而,难以用标准的基于颗粒技术模拟高分辨率表面变形细节。本文提出了一种新颖的方法来模拟手术环境中的复杂表面的弹性行为。我们方法的基本思想是将辅助表面网引入现有的基于粒子的仿真框架,并利用预计的表面数据与实验生物力学参数进行可变形建模。高分辨率器官变形和低分辨率软组织变形分别以基于表面和颗粒基方法处理。我们的方法提供了一种有效和物理有效的方法来模拟基于颗粒的手术模拟技术的器官变形细节,而无需使用自适应粒子方法,如我们的实验结果所示 -

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