首页> 外文期刊>The Journal of oral implantology >Stress Distribution Around Maxillary Anterior Implants as a Factor of Labial Bone Thickness and Occlusal Load Angles: A 3-Dimensional Finite Element Analysis
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Stress Distribution Around Maxillary Anterior Implants as a Factor of Labial Bone Thickness and Occlusal Load Angles: A 3-Dimensional Finite Element Analysis

机译:上颌前植入物周围的应力分布作为唇骨厚度和咬合负荷角的一个因素:三维有限元分析

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摘要

The purpose of this study was to evaluate the influence of the stress/strain distribution in buccal bone of an anterior maxillary implant using 3 bone thicknesses under 5 different loading angles. Different testing conditions incorporating 3 buccal bone thicknesses, 3 bone compositions, and 5 loading angles of an anterior maxillary implant were applied in order to investigate the resultant stress/strain distribution with finite element analysis. The maximum equivalent stress/strain increased with the decreasing of loading angle relative to the long axis. In addition to loading angle, bone quality and quantity also influenced resultant stress distribution. Dental practitioners should consider combinations of bone composition, diameter, and load angulations to predict success or failure for a given implant length and diameter.
机译:这项研究的目的是评估在5个不同的加载角度下使用3种厚度的上颌前种植体的颊骨中应力/应变分布的影响。应用了包含3个颊骨厚度,3个骨成分和5个上颌前种植体的加载角度的不同测试条件,以通过有限元分析研究所得的应力/应变分布。随着载荷角相对于长轴的减小,最大等效应力/应变增加。除加载角度外,骨骼的质量和数量也影响合成应力的分布。牙科医生应考虑骨组成,直径和负荷角度的组合,以预测给定植入物长度和直径的成功或失败。

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