材料科学
植入
牙冠(牙科)
松质骨
桥台
冯·米塞斯屈服准则
有限元法
骨整合
立方氧化锆
牙种植体
钛
前磨牙
牙科
臼齿
口腔正畸科
复合材料
结构工程
陶瓷
医学
外科
工程类
冶金
作者
Chih-Ling Chang,Chen-Sheng Chen,Tze Cheung Yeung,Ming‐Lun Hsu
出处
期刊:PubMed
[National Institutes of Health]
日期:2014-01-14
卷期号:27 (4): e49-57
被引量:30
摘要
PURPOSE: The objective of this study was to analyze and compare the stresses in two different bone-implant interface conditions in anisotropic three-dimensional finite element models (FEMs) of an osseointegrated implant of either commercially pure titanium or yttrium-partially stabilized zirconia (Y-PSZ) in combination with different superstructures (gold alloy or Y-PSZ crown) in the posterior maxilla. MATERIALS AND METHODS: Three-dimensional FEMs were created of a first molar section of the maxilla into which was embedded an implant, connected to an abutment and superstructure, using commercial software. Two versions of the FEM were constructed; these allowed varying assignment of properties (either a bonded and or a contact interface), so that all experimental variables could be investigated in eight groups. Compact and cancellous bone were modeled as fully orthotropic and transversely isotropic, respectively. Oblique (200-N vertical and 40-N horizontal) occlusal loading was applied at the central and distal fossae of the crown. RESULTS: Maximum von Mises and compressive stresses in the compact bone in the two interfaces were lower in the zirconia implant groups than in the titanium implant groups. A similar pattern of stress distribution in cancellous bone was observed, not only on the palatal side of the platform but also in the apical area of both types of implants. CONCLUSION: The biomechanical parameters of the new zirconia implant generated a performance similar to that of the titanium implant in terms of displacement, stresses on the implant, and the bone-implant interface; therefore, it may be a viable alternative, especially for esthetic regions.
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