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一种改进的颅颌面手术模拟有限元模型。

An improved finite element model for craniofacial surgery simulation.

机构信息

Shanghai Jiao Tong University, Shanghai, China.

出版信息

Int J Comput Assist Radiol Surg. 2009 Nov;4(6):579-87. doi: 10.1007/s11548-009-0373-3. Epub 2009 Jun 13.

Abstract

PURPOSE

A novel approach is proposed for simulating the deformation of the facial soft tissues in the craniofacial surgery simulation.

METHODS

A nonlinear finite mixed-element model (NFM-EM) based on solid-shell elements and Lagrange principle of virtual work is proposed, which addresses the heterogeneity in geometry and material properties found in the soft tissues of the face. Moreover, after the investigation of the strain-potential models, the biomechanical characteristics of skin, muscles and fat are modeled with the most suitable material properties. In addition, an improved contact algorithm is used to compute the boundary conditions of the soft tissue model.

RESULTS

The quantitative validation and the comparative results with other models proved the effectiveness of the approach on the simulation of complex soft tissues. The average absolute value of errors stays below 0.5 mm and the 95% percentiles of the distance map is less than 1.5 mm.

CONCLUSIONS

NFM-EM promotes the accuracy and effectiveness of the soft tissue deformation, and the effective contact algorithm bridges the bone-related planning and the prediction of the target face.

摘要

目的

提出了一种新的方法来模拟颅面手术模拟中的面部软组织变形。

方法

提出了一种基于实体壳单元和虚功原理的非线性有限混合元模型(NFM-EM),该模型解决了面部软组织中存在的几何形状和材料性能的不均匀性。此外,在研究应变势模型之后,采用最适合的材料特性对皮肤、肌肉和脂肪的生物力学特性进行建模。此外,还使用改进的接触算法来计算软组织模型的边界条件。

结果

定量验证和与其他模型的比较结果证明了该方法在模拟复杂软组织方面的有效性。误差的平均值绝对值低于 0.5 毫米,距离图的 95%百分位数小于 1.5 毫米。

结论

NFM-EM 提高了软组织变形的准确性和有效性,有效的接触算法弥合了与骨骼相关的规划和目标面部预测之间的差距。

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