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Gradient field based inhomogeneous volumetric mesh deformation for maxillofacial surgery simulation

机译:基于梯度场的非均匀体积网格变形用于颌面外科手术仿真

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摘要

This paper presents a novel inhomogeneous volumetric mesh deformation approach by gradient field manipulation, and uses it for maxillofacial surgery simulation. The study is inspired by the state-of-the-art surface deformation techniques based on differential representations. Working in the volumetric domain instead of on only the surface can preserve the volumetric details much better, avoid local self-intersections, and achieve better deformation propagation because of the internal mesh connections. By integrating the mesh cell material stiffness parameter into our new discrete volumetric Laplacian operator, it is very convenient to incorporate inhomogeneous materials into the deformation framework. In addition, the system matrix for solving the volumetric harmonic field to handle the local transformation problem is the same used for Poisson reconstruction equation, thus it requires solving essentially only one global linear system. The system is easy to use, and can accept explicit rotational constraints, or only translational constraints to drive the deformation. One typical maxillofacial surgery case was simulated by the new methodology with inhomogeneous material estimated directly from CT data, and compared to the commonly used finite element method (FEM) approach. The results demonstrated that the deformation methodology achieved good accuracy, as well as interactive performance. Therefore, the usage of our volumetric mesh deformation approach is relevant and suitable for daily clinical practice.
机译:本文提出了一种新的梯度场操纵的不均匀体积网格变形方法,并将其用于颌面外科手术仿真。该研究的灵感来自基于微分表示法的最新表面变形技术。由于具有内部网格连接,因此在体积域中而不是仅在曲面上进行工作可以更好地保留体积细节,避免局部自相交,并实现更好的变形传播。通过将网格单元材料的刚度参数集成到我们新的离散体积拉普拉斯算子中,将不均匀的材料合并到变形框架中非常方便。另外,用于求解体积谐波场以处理局部变换问题的系统矩阵与泊松重构方程所用的系统矩阵相同,因此它仅需要求解一个整体线性系统。该系统易于使用,并且可以接受明确的旋转约束,或仅接受平移约束来驱动变形。通过新方法模拟了一个典型的颌面外科手术病例,直接从CT数据估计了不均匀的材料,并将其与常用的有限元方法(FEM)进行了比较。结果表明,变形方法获得了良好的精度以及交互性能。因此,我们的体积网格变形方法的使用是相关的并且适合于日常临床实践。

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