首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >A 3D FINITE ELEMENT ANALYSIS STUDY OF THE JAWBONES RESPONSE TO OSSEODENSIFICATION AND CONVENTIONAL DRILLING
【24h】

A 3D FINITE ELEMENT ANALYSIS STUDY OF THE JAWBONES RESPONSE TO OSSEODENSIFICATION AND CONVENTIONAL DRILLING

机译:颌骨响应对渗透压和常规钻探的3D有限元分析研究

获取原文

摘要

Osseodensification is used to densify natural bone and increase dental implant stability. This work aims to compare, using finite element analysis, the stress generated on different jawbone areas between conventional drilling (OD) and osseodensification drilling (CD). Cone-beam CT scans of four different edentulous patients were obtained. Implant insertion and removal in the four bone models were simulated for the two different drilling techniques. Materials distribution was set as homogeneous throughout each part. In the OD technique, a new densified region was formed with new material properties based on a relation between density and elasticity. Material distribution of the densified regions was assumed to be a non-homogenous linear pattern and its gradual variation complies with the graph-related slope equations. Von-Mises stress for cortical and trabecular bone was significantly higher in the CD model in comparison to their values in the OD. as densified regions have absorbed most of the stresses and restricted their propagation. The same phenomenon was observed in the implant pull-out bone model. The OD technique was found to affect the primary stability of dental implants positively. The bone types present in different jawbone regions react differently to this technique according to the percentage of trabecular bone to cortical bone.
机译:疏通症用于致密天然骨骼并提高牙科植入物稳定性。这项工作旨在使用有限元分析比较传统钻孔(OD)和渗透钻孔(CD)之间的不同Jawone区域产生的应力。获得了四个不同薄型患者的锥梁CT扫描。为两种不同的钻井技术模拟了四个骨模型中的植入物插入和去除。材料分布在每个部分中设置为均匀。在OD技术中,基于密度和弹性之间的关系,形成新的致密区域。假设致密区域的材料分布是非均匀的线性图案,并且其逐渐变化符合与图形相关的斜率方程。 CD模型的von-mises对皮质和小梁骨的胁迫显着高于其在OD中的值。由于致密地区吸收了大部分应力并限制了它们的繁殖。在植入物拉出骨模型中观察到相同的现象。发现OD技术积极影响牙科植入物的主要稳定性。在不同的颚骨区域中存在的骨类型根据小梁骨的百分比与皮质骨的百分比不同地反应不同。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号