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比较上颌后牙区双皮质牙种植中牙槽嵴皮质骨和窦底皮质骨的影响:三维有限元分析

Comparing the influence of crestal cortical bone and sinus floor cortical bone in posterior maxilla bi-cortical dental implantation: a three-dimensional finite element analysis.

作者信息

Yan Xu, Zhang Xinwen, Chi Weichao, Ai Hongjun, Wu Lin

机构信息

Department of Prosthodontics.

出版信息

Acta Odontol Scand. 2015 May;73(4):312-20. doi: 10.3109/00016357.2014.967718. Epub 2014 Oct 20.

Abstract

OBJECTIVE

This study aimed to compare the influence of alveolar ridge cortical bone and sinus floor cortical bone in sinus areabi-cortical dental implantation by means of 3D finite element analysis.

MATERIALS AND METHODS

Three-dimensional finite element (FE) models in a posterior maxillary region with sinus membrane and the same height of alveolar ridge of 10 mm were generated according to the anatomical data of the sinus area. They were either with fixed thickness of crestal cortical bone and variable thickness of sinus floor cortical bone or vice versa. Ten models were assumed to be under immediate loading or conventional loading. The standard implant model based on the Nobel Biocare implant system was created via computer-aided design software. All materials were assumed to be isotropic and linearly elastic. An inclined force of 129 N was applied.

RESULTS

Von Mises stress mainly concentrated on the surface of crestal cortical bone around the implant neck. For all the models, both the axial and buccolingual resonance frequencies of conventional loading were higher than those of immediate loading; however, the difference is less than 5%.

CONCLUSION

The results showed that bi-cortical implant in sinus area increased the stability of the implant, especially for immediately loading implantation. The thickness of both crestal cortical bone and sinus floor cortical bone influenced implant micromotion and stress distribution; however, crestal cortical bone may be more important than sinus floor cortical bone.

摘要

目的

本研究旨在通过三维有限元分析比较牙槽嵴皮质骨和窦底皮质骨在窦区双皮质牙种植中的影响。

材料与方法

根据窦区的解剖数据,建立了上颌后牙区带有窦膜且牙槽嵴高度均为10mm的三维有限元(FE)模型。这些模型要么嵴顶皮质骨厚度固定而窦底皮质骨厚度可变,要么反之。假设有10个模型分别承受即刻加载或传统加载。通过计算机辅助设计软件创建基于诺贝尔生物保健种植系统的标准种植体模型。所有材料均假定为各向同性且线性弹性。施加129N的倾斜力。

结果

冯·米塞斯应力主要集中在种植体颈部周围的嵴顶皮质骨表面。对于所有模型,传统加载的轴向和颊舌向共振频率均高于即刻加载;然而,差异小于5%。

结论

结果表明,窦区双皮质种植体增加了种植体的稳定性,尤其是即刻加载种植。嵴顶皮质骨和窦底皮质骨的厚度均影响种植体微动和应力分布;然而,嵴顶皮质骨可能比窦底皮质骨更重要。

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