国际口腔医学杂志
國際口腔醫學雜誌
국제구강의학잡지
JOURNAL OF INTERNATIONAL STOMATOLOGY
2013年
3期
297-300
,共4页
辛宇%吕东升%张文%肖玲%赵英
辛宇%呂東升%張文%肖玲%趙英
신우%려동승%장문%초령%조영
下颌骨%三维有限元%Mimics%Ansys
下頜骨%三維有限元%Mimics%Ansys
하합골%삼유유한원%Mimics%Ansys
mandible%three dimensional finite element%Mimics%Ansys
目的快速、准确地建立含完整牙列下颌骨的三维有限元模型,并进行相关的生物力学性能分析,为更多关注医学有限元分析的研究者提供参考.方法采用锥形束CT扫描技术获取患者颅骨的DICOM数据,应用Mimics软件快速建立含全牙列下颌骨的三维有限元模型,并对其所含多种材料属性进行赋值,再导入Ansys软件进行分析处理.结果成功建立含完整牙列下颌骨的三维有限元模型,实现了对下颌骨不同结构的材料赋值,并进行模型加载,验证其有效性.结论采用锥形束CT以及Mimics和Ansys软件相结合的方法建立多种材料属性的含完整牙列下颌骨的三维有限元模型,并为对其开展更进一步的生物力学性能分析奠定了基础.
目的快速、準確地建立含完整牙列下頜骨的三維有限元模型,併進行相關的生物力學性能分析,為更多關註醫學有限元分析的研究者提供參攷.方法採用錐形束CT掃描技術穫取患者顱骨的DICOM數據,應用Mimics軟件快速建立含全牙列下頜骨的三維有限元模型,併對其所含多種材料屬性進行賦值,再導入Ansys軟件進行分析處理.結果成功建立含完整牙列下頜骨的三維有限元模型,實現瞭對下頜骨不同結構的材料賦值,併進行模型加載,驗證其有效性.結論採用錐形束CT以及Mimics和Ansys軟件相結閤的方法建立多種材料屬性的含完整牙列下頜骨的三維有限元模型,併為對其開展更進一步的生物力學性能分析奠定瞭基礎.
목적쾌속、준학지건립함완정아렬하합골적삼유유한원모형,병진행상관적생물역학성능분석,위경다관주의학유한원분석적연구자제공삼고.방법채용추형속CT소묘기술획취환자로골적DICOM수거,응용Mimics연건쾌속건립함전아렬하합골적삼유유한원모형,병대기소함다충재료속성진행부치,재도입Ansys연건진행분석처리.결과성공건립함완정아렬하합골적삼유유한원모형,실현료대하합골불동결구적재료부치,병진행모형가재,험증기유효성.결론채용추형속CT이급Mimics화Ansys연건상결합적방법건립다충재료속성적함완정아렬하합골적삼유유한원모형,병위대기개전경진일보적생물역학성능분석전정료기출.
@@@@Objective To quickly and accurately construct three dimensional finite element model of the dentu-lous mandible and conduct relevant analyses of its biomechanical properties, so as to provide reference for more researchers who focus on medical finite element analysis. Methods DICOM data of patient’s skull is obtained with cone beam CT technology. Three dimensional finite element model of the dentulous mandible was quickly constructed with Mimics software and assign the defined values to the properties of contained materials and then input into Ansys software for analysis. Results Three dimensional finite element model of the dentulous mandible was successfully constructed; material assignment of different structures of mandible was realized and its validity was verified through model load. Conclusion Three dimensional finite element models of the dentulous mandible of different material properties constructed with the method of combining cone beam CT, Mimics and Ansys soft-ware comply with the clinical circumstances and lay the foundation for further analysis of biomechanical properties.