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首页> 外文期刊>Journal of dentistry >Bone stress and interfacial sliding analysis of implant designs on an immediately loaded maxillary implant: A non-linear finite element study.
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Bone stress and interfacial sliding analysis of implant designs on an immediately loaded maxillary implant: A non-linear finite element study.

机译:立即加载的上颌植入物上的植入物设计的骨应力和界面滑动分析:非线性有限元研究。

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摘要

OBJECTIVES: This study investigated the surrounding bone stress and the implant-bone interfacial sliding of implant designs and implant sizes of immediately loaded implant with maxillary sinus augmentation by using three-dimensional (3D) non-linear finite element (FE) analysis. METHODS: Twenty-four FE models including four implant designs (cylindrical, threaded, stepped and step-thread implants) and three implant dimensions (standard, long and wide threaded implants) with a bonded and three levels of frictional contact of implant-bone interfaces were analyzed. The maxillary model was constructed from computer tomography (CT) images of a human skull and all 3D implant models were created via the computer-aided design (CAD) software. RESULTS: The use of threaded implants decreased the bone stress and sliding distance obviously about 30% as compared with non-threaded (cylindrical and stepped) implants. Increasing the implant's length or diameter reduced the bone stress by 13-26%. Employing a immediately loaded implant with smooth machine surface (mu=0.3, mu represents frictional coefficient) increased the bone stress by 28-63% as compared with the osseointegrated (bonded interfaces) implants. Roughening the implant surface (mu>0.3) did not reduced the bone stress, however it did decrease the interfacial sliding between implant and bone. CONCLUSIONS: For an immediately loaded implant placed with sinus augmentation, using threaded implant could decrease both the bone stress and implant-bone sliding distance which may improve the implant initial stability and long-term survival. Rough surface of implants shows no benefit to reduce the bone stress but they could lower the interfacial sliding. On the contrary, employing long or wide implants decrease the bone stress but they cannot diminish the interfacial sliding.
机译:目的:本研究使用三维(3D)非线性有限元(FE)分析方法,研究了周围的骨应力和种植体设计的种植体与种植体的界面滑动,以及上颌窦增大的即刻加载的种植体的种植体尺寸。方法:二十四种有限元模型,包括四种植入物设计(圆柱,螺纹,阶梯和阶梯螺纹植入物)和三种植入物尺寸(标准,长螺纹和宽螺纹植入物),并具有与种植体-骨界面的粘结性和三级摩擦接触被分析。上颌模型是根据人类头骨的计算机断层扫描(CT)图像构建的,并且所有3D植入物模型都是通过计算机辅助设计(CAD)软件创建的。结果:与无螺纹(圆柱形和阶梯形)种植体相比,使用带螺纹的种植体可明显降低骨应力和滑动距离约30%。增加植入物的长度或直径可将骨应力降低13%至26%。与骨整合(粘结界面)植入物相比,使用立即加载的具有光滑机器表面的植入物(μ= 0.3,μ表示摩擦系数)使骨骼应力增加了28-63%。使植入物表面粗糙化(μ> 0.3)不会降低骨骼应力,但是确实会减少植入物与骨骼之间的界面滑动。结论:对于立即加载的种植体并进行窦增大,使用带螺纹的种植体可以降低骨应力和种植体骨滑动距离,从而可以改善种植体的初始稳定性和长期存活率。植入物的粗糙表面无助于降低骨应力,但可以降低界面滑动。相反,采用长或宽的植入物可减轻骨应力,但不能减少界面滑动。

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