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首页> 外文期刊>European journal of oral sciences >Factorial analysis of variables influencing mechanical characteristics of a single tooth implant placed in the maxilla using finite element analysis and the statistics-based Taguchi method.
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Factorial analysis of variables influencing mechanical characteristics of a single tooth implant placed in the maxilla using finite element analysis and the statistics-based Taguchi method.

机译:使用有限元分析和基于统计的田口方法,对影响上颌中单个牙种植体机械特性的变量进行因子分析。

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摘要

The aim of this study was to determine the relative contribution of changes (design factors) in implant system, position, bone classification, and loading condition on the biomechanical response of a single-unit implant-supported restoration. Non-linear finite-element analysis was used to simulate the mechanical responses in an implant placed in the maxillary posterior region. The Taguchi method was employed to identify the significance of each design factor in controlling the strain/stress. Increased strain values were noted in the cortical bone with lateral force and an implant with a retaining-screw connection. Cancellous bone strain was affected primarily by bone type and increased with decreasing bone density. Implant stress was influenced mainly by implant type and position. The combined use of finite-element analysis and the Taguchi method facilitated effective evaluation of the mechanical characteristics of a single-unit implant-supported restoration. Implants placed along the axis of loading exhibit improved stress/strain distribution. The reduction of lateral stress through implant placement and selective occlusal adjustment is recommended. An implant with a tapered interference fit connection performed better as a force-transmission mechanism than other configurations.
机译:这项研究的目的是确定植入物系统,位置,骨分类和负荷条件对植入物支持的修复体的生物力学响应的变化(设计因素)的相对贡献。非线性有限元分析用于模拟上颌后牙种植体的机械响应。 Taguchi方法用于确定每个设计因素在控制应变/应力中的重要性。随着侧向力和带有固定螺钉连接的植入物,皮质骨的应变值增加。松质骨应变主要受骨类型影响,并随骨密度降低而增加。植入物应力主要受植入物类型和位置的影响。有限元分析和Taguchi方法的结合使用有助于有效评估单个单元植入物支持的修复体的力学特性。沿加载轴放置的植入物显示出改善的应力/应变分布。建议通过植入物的放置和选择性的咬合调节来减少侧向应力。具有锥形过盈配合连接的植入物作为力传递机构的性能优于其他配置。

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