Wu Zhi-fang, Lei Yong-hua, Li Wen-jie, Liao Sheng-hui, Zhao Zi-jin
Department of Orthodontics, Xiangya Hospital,Central South University, Changsha 410008, China.
Shanghai Kou Qiang Yi Xue. 2013 Feb;22(1):35-40.
To explore an effective method to construct and validate a finite element model of the unilateral cleft lip and palate(UCLP) craniomaxillary complex with sutures, which could be applied in further three-dimensional finite element analysis (FEA).
One male patient aged 9 with left complete lip and palate cleft was selected and CT scan was taken at 0.75mm intervals on the skull. The CT data was saved in Dicom format, which was, afterwards, imported into Software Mimics 10.0 to generate a three-dimensional anatomic model. Then Software Geomagic Studio 12.0 was used to match, smoothen and transfer the anatomic model into a CAD model with NURBS patches. Then, 12 circum-maxillary sutures were integrated into the CAD model by Solidworks (2011 version). Finally meshing by E-feature Biomedical Modeler was done and a three-dimensional finite element model with sutures was obtained. A maxillary protraction force (500 g per side, 20° downward and forward from the occlusal plane) was applied. Displacement and stress distribution of some important craniofacial structures were measured and compared with the results of related researches in the literature.
A three-dimensional finite element model of UCLP craniomaxillary complex with 12 sutures was established from the CT scan data. This simulation model consisted of 206 753 individual elements with 260 662 nodes, which was a more precise simulation and a better representation of human craniomaxillary complex than the formerly available FEA models. By comparison, this model was proved to be valid.
It is an effective way to establish the three-dimensional finite element model of UCLP cranio-maxillary complex with sutures from CT images with the help of the following softwares: Mimics 10.0, Geomagic Studio 12.0, Solidworks and E-feature Biomedical Modeler.
探索一种构建并验证包含缝合线的单侧唇腭裂(UCLP)颅颌面复合体有限元模型的有效方法,该模型可应用于进一步的三维有限元分析(FEA)。
选取一名9岁左侧完全性唇腭裂男性患者,对头骨进行层厚0.75mm的CT扫描。CT数据以Dicom格式保存,随后导入Mimics 10.0软件生成三维解剖模型。然后使用Geomagic Studio 12.0软件对解剖模型进行匹配、平滑处理,并将其转换为具有非均匀有理B样条(NURBS)面片的CAD模型。接着,通过Solidworks(2011版)将12条上颌周围缝合线整合到CAD模型中。最后,使用E-feature Biomedical Modeler进行网格划分,得到一个包含缝合线的三维有限元模型。施加上颌前牵引力(每侧500g,从咬合平面向下向前20°)。测量一些重要颅面结构的位移和应力分布,并与文献中相关研究结果进行比较。
基于CT扫描数据建立了包含12条缝合线的UCLP颅颌面复合体三维有限元模型。该模拟模型由206 753个单元和260 662个节点组成,与以前可用的FEA模型相比,是一个更精确的模拟,能更好地呈现人类颅颌面复合体。经比较,该模型被证明是有效的。
借助Mimics 10.0、Geomagic Studio 12.0、Solidworks和E-feature Biomedical Modeler等软件,从CT图像建立包含缝合线的UCLP颅颌面复合体三维有限元模型是一种有效的方法。