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The role of superstructure material on the stress distribution in mandibular full-arch implant-supported fixed dentures A CT-based 3D-FEA

机译:上颌结构材料在下颌全牙种植体支持的固定义齿中应力分布中的作用基于CT的3D-FEA

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摘要

This study evaluated the stress distribution in mandibular full-arch implant-supported fixed dentures with different veneering and metallic infrastructure materials, using three-dimensional finite element analysis. Ten models were obtained from an edentulous human mandible with a complete denture fixed by four implants. Acrylic resin (RES) and porcelain (POR) teeth were associated with infrastructures of titanium (Ti), gold (Au), silver-palladium (AgPd), chrome-cobalt (CoCr) and nickel-chrome (NiCr). A 100-N oblique was applied. The von Mises (σvM) and maximum (σmax) and minimum (σmin) principal stresses were obtained. The RES-AgPd group showed the lowest ovM values, while the RES-Ni-Cr group showed the highest. In the bone tissue, the RES-Au group was the only one that showed different omax values with a 12% increase in comparison to the other groups which had similar stress values. In the implants, the groups with Ti, Au and AgPd infrastructures, either with porcelain or resin teeth, showed σvM values similar and lower in comparison to the groups with CoCr and NiCr infrastructures. The tooth veneering material influenced the stress values in metallic infrastructures, in which the acrylic resin had the highest values. The veneering and infrastructure materials have influence on stress values of implant-supported dentures, except for the peri-implant bone tissue.
机译:本研究使用三维有限元分析,评估了不同饰面和金属基础设施材料的下颌全牙种植体支持的固定义齿的应力分布。从无牙的下颌骨获得十个模型,该下颌骨具有由四个植入物固定的完整义齿。丙烯酸树脂(RES)和瓷器(POR)的牙齿与钛(Ti),金(Au),银钯(AgPd),铬钴(CoCr)和镍铬(NiCr)的基础设施有关。施加100 N斜角。获得了冯米塞斯(σvM)和最大(σmax)和最小(σmin)主应力。 RES-AgPd组显示最低的ovM值,而RES-Ni-Cr组显示最高的ovM值。在骨组织中,RES-Au组是唯一显示不同omax值的组,与其他具有相似应力值的组相比,增加了12%。在植入物中,具有Ti,Au和AgPd基础设施的组,无论是瓷牙还是树脂牙,与具有CoCr和NiCr基础设施的组相比,其σvM值均相近且较低。牙齿装饰材料会影响金属基础设施中的应力值,其中丙烯酸树脂的应力值最高。除植入物周围的骨组织外,饰面材料和基础设施材料都会对植入物支持的假牙的应力值产生影响。

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  • 来源
    《Materials science & engineering》 |2014年第2期|92-99|共8页
  • 作者单位

    Department of Dental Materials and Prosthodontics, Aracatuba Dental School, Univ Estadual Paulista (UNESP),Jose Bonifacio 1193, Aracatuba, Sao Paulo 16015-050, Brazil;

    Department of Prosthodontics and Periodontology, Piracicaba Dental School, University of Campinas (UNICAMP), Av Limeira 901, Piracicaba, Sao Paulo, Brazil;

    Department of Dental Materials and Prosthodontics, Aracatuba Dental School, Univ Estadual Paulista (UNESP),Jose Bonifacio 1193, Aracatuba, Sao Paulo 16015-050, Brazil;

    Department of Dental Materials and Prosthodontics, Aracatuba Dental School, Univ Estadual Paulista (UNESP),Jose Bonifacio 1193, Aracatuba, Sao Paulo 16015-050, Brazil;

    Department of Dental Materials and Prosthodontics, Aracatuba Dental School, Univ Estadual Paulista (UNESP),Jose Bonifacio 1193, Aracatuba, Sao Paulo 16015-050, Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Finite element analysis; Implant-supported fixed dentures; Infrastructure;

    机译:有限元分析;植入物支持的固定义齿;基础设施;

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