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下颌颏部骨折内固定的三维有限元模型及边界约束的建立
引用本文:罗小惠,王杭,樊瑜波.下颌颏部骨折内固定的三维有限元模型及边界约束的建立[J].生物医学工程学杂志,2007,24(2):316-319,323.
作者姓名:罗小惠  王杭  樊瑜波
作者单位:1. 西南科技大学,土木工程与建筑学院,绵阳,621010
2. 四川大学,生物力学工程实验室,成都,610065;四川大学,华西口腔医学院,成都,610041
3. 四川大学,生物力学工程实验室,成都,610065;北京航空航天大学,生物工程系,北京,100083
摘    要:通过Pro/E和ANSYS建立下颌骨颏部骨折内固定的三维有限元模型,并模拟了各种功能状态下的边界约束。使用计算机图像处理软件对CT扫描图像进行预处理,然后采用自编程序获取下颌骨解剖结构的三维坐标数据,用ANSYS建立下颌骨的三维有限元模型。采用数值化建模软件Pro/E建立小型接骨板-螺钉固定体系统的实体模型。模拟下颌骨颏部正中骨折坚强内固定治疗,建立该内固定治疗的有限元模型。通过改变各组咀嚼肌力的大小,进行了三种咬合状态的边界约束。获得了形态逼真、相似性好的下颌颏部骨折内固定后的三维有限元模型,并模拟了各功能状态下的边界约束,为后期的生物力学分析奠定了基础。

关 键 词:下颌骨  内固定  三维有限元模型  边界约束
修稿时间:2005-10-242006-04-04

3-D Finite Element Modeling of Internal Fixation of Mandibular Mental Fracture and the Design of Boundary Constraints
Luo Xiaohui,Wang Hang,Fan Yubo.3-D Finite Element Modeling of Internal Fixation of Mandibular Mental Fracture and the Design of Boundary Constraints[J].Journal of Biomedical Engineering,2007,24(2):316-319,323.
Authors:Luo Xiaohui  Wang Hang  Fan Yubo
Institution:1.College of Civil Eng and Archtecture, Southwest University of Science and Technology, Mianyang 621010,China; 2.Laboratory of Biomechanics Engineering, Sichuan University, Chengdu 610065 ,China; 3West China College of Stomatology, Sichuan University, Chengdu 610041, China; 4.Department of Bioengineering, Beihang University,Beijing 100083,China
Abstract:This study was aimed to develop a 3-D finite element (3-D FE)model of the mental fractured mandible and design the boundary constrains. The CT images from a health volunteer were used as the original information and put into ANSYS program to build a 3-D FE model. The model of the miniplate and screw which were used for the internal fixation was established by Pro/E. The boundary constrains of different muscle loadings were used to simulate the 3 functional conditions of the mandible. A 3-D FE model of mental fractured mandible under the miniplate-screw internal fixation system was constructed. And by the boundary constraints, the 3 biting conditions were simulated and the model could serve as a foundation on which to analyze the biomechanical behavior of the fractured mandible.
Keywords:Mandible Internal fixation Three-dimensional finite element (3-D FE) model Boundary constraints
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