华西口腔医学杂志

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不完全截骨牵张成骨重建犬下颌骨节段缺失的有限元模型建立

李岩峰1 胡敏2 吴子恒3 林峰3   

  1. 1.中国人民解放军总医院第一附属医院口腔科, 北京100037;2.中国人民解放军总医院口腔科, 北京100853; 3.清华大学机械工程学院机械工程系, 北京100084
  • 收稿日期:2009-04-25 修回日期:2009-04-25 出版日期:2009-04-20 发布日期:2009-04-20
  • 通讯作者: 胡敏,Tel:010-66939772
  • 作者简介: 李岩峰(1975-),男,河北人,副主任医师,博士
  • 基金资助:

    国家自然科学基金资助项目(30801299;30540046);解放军总医院苗圃基金资助项目(07MP46);解放军总医院304临床部院级课题资助项目(YJ200816)

Establishment of a finite element model: Canine segmental mandibular reconstruction by partial-corticalcutting distraction osteogenesis

LI Yan-feng1, HU Min2, WU Zi-heng3, LIN Feng3   

  1. 1. Dept. of Stomatology, The First Affiliated Hospital of China People′s Liberation Army General Hospital, Beijing 100037, China; 2. Dept. of Stomatology, China People′s Liberation Army General Hospital, Beijing 100853, China; 3. Dept. of Mechanics, College of Mechanics, Tsinghua University, Beijing 100084, China
  • Received:2009-04-25 Revised:2009-04-25 Online:2009-04-20 Published:2009-04-20
  • Contact: HU Min,Tel:010-66939772

摘要:

目的建立不完全截骨牵张成骨重建犬下颌骨节段缺失的有限元模型。方法Mimics软件读取实验犬下颌骨CT资料形成几何模型,用Magics软件的cut工具进行切割,每部分用Magics的粘接功能连接,忽略咀嚼肌对下颌骨的约束,限制下颌关节横嵴的运动,MARC软件完成有限元分析。结果不完全截骨牵张成骨重建犬下颌骨节段缺失的有限元模型由5部分组成。以12 N的力进行牵张,发现当逐渐减小舌侧剩余皮质骨的宽度时,此区域VonMises应力逐渐增大,当皮质骨剩余1.4 mm时,此区域的Von Mises应力是34.60 MPa。结论运用专业软件可建立保留舌侧部分骨皮质的不完全截骨牵张成骨有限元模型,模拟牵张过程,对下颌骨进行生物力学模拟研究。

关键词: 下颌骨重建, 牵张成骨, 不全截骨法

Abstract:

Objective To establish a finite element model of canine segmental mandibular reconstruction by partial- cortical-cutting distraction osteogenesis. Methods The geometry model was established by Mimics software via reading the data of DICOM format from CT and was cut with Magics software. The finite element model was established and was analyzed by MARC software. Results A finite element model of canine segmental mandibular reconstruction by partial -cortical -cutting distraction osteogenesis was established. The model was composed of five parts. These five parts were felted via Magics software. The Von Mises stress of the joint region of slice and the slide segment were 34.60 MPa when the slide segment was retained 1.4 mm width during distraction osteogenesis with the force of 12 N. Conclusion The biomechanics analysis can be complated through the finite element model of canine segmental mandibular reconstruction by distraction osteogenesis that retains lingual cortical bone.

Key words: segmental mandibular reconstruction, distraction osteogenesis, partial-cortical-cutting method