首页> 外文期刊>Dental materials >Influences of implant neck design and implant-abutment joint type on peri-implant bone stress and abutment micromovement: Three-dimensional finite element analysis
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Influences of implant neck design and implant-abutment joint type on peri-implant bone stress and abutment micromovement: Three-dimensional finite element analysis

机译:种植体颈部设计和种植体-基台关节类型对种植体周围骨应力和基台微动的影响:三维有限元分析

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摘要

Objectives. Occlusal overloading is one of the causes of peri-implant bone resorption, and many studies on stress distribution in the peri-implant bone by three-dimensional finite element analysis (3D FEA) have been performed. However, the FEA models previously reported were simplified and far from representing what occurs in clinical situations. In this study, 3D FEA was conducted with simulation of the complex structure of dental implants, and the influences of neck design and connections with an abutment on peri-implant bone stress and abutment micromovement were investigated. Methods. Three types of two-piece implant CAD models were designed: external joint with a conical tapered neck (EJ), internal joint with a straight neck (IJ), and conical joint with a reverse conical neck (CJ). 3D FEA was performed with the setting of a "contact" condition at the component interface, and stress distribution in the peri-implant bone and abutment micromovement were analyzed. Results. The shear stress was concentrated on the mesiodistal side of the cortical bone for EJ. EJ had the largest amount of abutment micromovement. While the von Mises and shear stresses around the implant neck were concentrated on the labial bone for IJ, they were distributed on the mesiodistal side of the cortical bone for CJ. CJ had the least amount of abutment micromovement. Significance. Implants with a conical joint with an abutment and reverse conical neck design may effectively control occlusal overloading on the labial bone and abutment micromovement.
机译:目标。牙合超负荷是植入物周围骨吸收的原因之一,并且已经通过三维有限元分析(3D FEA)对植入物周围骨中的应力分布进行了许多研究。但是,先前报道的FEA模型已简化,远不能代表临床情况。在这项研究中,通过模拟牙齿植入物的复杂结构进行了3D FEA,并研究了颈部设计以及与基台的连接对植入物周围骨应力和基台微动的影响。方法。设计了两种类型的两件式种植体CAD模型:带圆锥形锥形颈部的外部关节(EJ),带直颈部的内部关节(IJ)和带反锥形颈部的圆锥形关节(CJ)。通过在组件界面处设置“接触”条件来执行3D FEA,并分析了植入物周围骨中的应力分布和基台微动。结果。对于EJ,剪切应力集中在皮质骨的近中外侧。 EJ的基台微动量最大。对于IJ,种植体颈部周围的von Mises和剪应力集中在唇骨上,而对于CJ,它们分布在皮质骨的近中隔侧。 CJ的基台微动量最少。意义。带有基台和反向锥形颈部的圆锥形关节的植入物可以有效控制唇骨和基台微动的咬合超负荷。

著录项

  • 来源
    《Dental materials》 |2012年第11期|p.1126-1133|共8页
  • 作者单位

    Department of Biomaterials Science, Osaka University Graduate School of Dentistry, Osaka, Japan,Department of Fixed Prosthodontics, Osaka University Graduate School of Dentistry, Osaka, Japan;

    Department of Biomaterials Science, Osaka University Graduate School of Dentistry, Osaka, Japan, Department of Biomaterials Science, Osaka University Graduate School of Dentistry, 1-8 Yamada-Oka, Suita 565-0871, Japan;

    Department of Biomaterials Science, Osaka University Graduate School of Dentistry, Osaka, Japan;

    Department of Fixed Prosthodontics, Osaka University Graduate School of Dentistry, Osaka, Japan;

    Department of Fixed Prosthodontics, Osaka University Graduate School of Dentistry, Osaka, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biomechanics; dental implant; finite element analysis; occlusal force; micromovement;

    机译:生物力学牙种植体;有限元分析;咬合力微动;
  • 入库时间 2022-08-18 03:47:08

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