首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >Biomechanical Properties of First Maxillary Molars with Different Endodontic Cavities: A Finite Element Analysis
【24h】

Biomechanical Properties of First Maxillary Molars with Different Endodontic Cavities: A Finite Element Analysis

机译:不同牙髓腔第一上颌臼齿的生物力学特性:有限元分析

获取原文
获取原文并翻译 | 示例
           

摘要

IntroductionThe aim of this study was to compare the biomechanical properties of first maxillary molars with different endodontic cavities using the finite element method. MethodsThree finite element analysis models of a maxillary first molar were designed and constructed with 3 different types of endodontic cavities: a traditional endodontic cavity, a conservative endodontic cavity, and an extended endodontic cavity. An intact tooth model was used for comparison. Each model was subjected to 3 different force loads directed at the occlusal surface. The stress distribution patterns and the maximum von Mises (VM) stresses were calculated and compared. ResultsThe peak VM stress on all models was at the site of the force load. The occlusal stresses were spread in an approximate actinomorphic pattern from the force loading point, and the stress was much higher when the force load was close to the access cavity margin. The peak root VM stresses on the root-filled teeth occurred at the apex and were significantly higher than that on the intact tooth, which appeared on the pericervical dentin. The area of pericervical dentin experiencing high VM stress increased as the cavities extended and the stress became concentrated in the area between the filling materials and the dentin. ConclusionsThe stress distribution on the occlusal surface were similar between the conservative endodontic cavity, the traditional endodontic cavity, and the extended endodontic cavity. With enlargement of the access cavity, the stress on the pericervical dentin increases dramatically.
机译:引言本研究的目的是使用有限元法比较第一上颌臼齿的生物力学特性。方法采用3种不同类型的牙髓空腔设计和构建了上颌第一磨牙的有限元分析模型:一种传统的牙髓腔,保守的牙髓腔和延伸的牙髓腔。完整的牙齿模型用于比较。将每个模型进行3种不同的力载荷,指向咬合表面。计算并比较应力分布图案和最大VONMES(VM)应力。所有型号的结果峰值VM压力位于力负荷的部位。咬合应力以力负载点的近似的辐射图案分布,当力载荷接近进入腔边距时,应力要高得多。根填充牙齿上的峰根VM应力发生在顶点上,并且显着高于完整牙齿上的牙齿,其出现在牙齿牙科牙本质上。由于延伸的腔延伸并且压力浓缩在填充材料和牙本质肽之间的区域中,牙科牙本质牙本质的面积增加。结论保守牙髓腔,传统牙髓腔和延伸的牙髓腔之间的应力分布在咬合表面上的应力分布。随着检修腔的扩大,对牙齿牙本质牙本质的应力急剧增加。

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