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牙种植体的直径、长度和弹性模量对种植体周围骨组织应力和应变水平的影响:三维有限元分析

The effect of diameter, length and elastic modulus of a dental implant on stress and strain levels in peri-implant bone: A 3D finite element analysis.

作者信息

Robau-Porrua Amanda, Pérez-Rodríguez Yoan, Soris-Rodríguez Laura M, Pérez-Acosta Osmel, González Jesús E

机构信息

Department of Technology of Machinery Construction, Mechanical Engineering Faculty, Technological University of Havana José Antonio Echeverría, Cuba.

Autonomous University of Nuevo León, FIME, México.

出版信息

Biomed Mater Eng. 2020;30(5-6):541-558. doi: 10.3233/BME-191073.

Abstract

This study investigated the effect of three different parameters of a dental implant on stress and strain values in the peri-implant bone by finite element analysis. In this work, the effect of diameter, length and elastic modulus on the biomechanical behavior of a new dental implant was simulated using the finite element method. A three-dimensional model of a mandible segment corresponding to the premolar region and twelve dental implant models were obtained. Loads in three directions were distributed on the surface of the coronal area of the dental implants. The dental implant models were obtained in the FreeCAD 0.16 software and the simulations were made using the Abaqus/CAE software. In all cases, higher stress concentrations were obtained in the peri-implant cortical bone between 40.6 and 62.8 MPa, while the highest levels of strain were observed in the peri-implant trabecular bone between 0.002544 and 0.003873. In general, the highest von Mises equivalent stress values were observed in the peri-implant cortical bone. However, in this bone, both the maximum von Mises equivalent stress values and the von Mises strain are similar or inferior to those reported in different studies by finite element for other models of dental implants under immediate loading. Maximum von Mises strain values were observed in peri-implant trabecular bone. However, in this bone strains levels were obtained that maintain bone density or increase it. The effect of the three simulated variables (implant diameter, length, and elastic modulus) have a statistically significant influence on the von Mises equivalent stress and in von Mises strain values.

摘要

本研究通过有限元分析,调查了牙科种植体的三个不同参数对种植体周围骨组织应力和应变值的影响。在这项工作中,使用有限元方法模拟了直径、长度和弹性模量对新型牙科种植体生物力学行为的影响。获得了对应于前磨牙区域的下颌骨节段的三维模型和十二个牙科种植体模型。在牙科种植体冠部区域的表面施加了三个方向的载荷。牙科种植体模型在FreeCAD 0.16软件中获得,并使用Abaqus/CAE软件进行模拟。在所有情况下,种植体周围皮质骨中获得了40.6至62.8兆帕之间的较高应力集中,而种植体周围松质骨中观察到了0.002544至0.003873之间的最高应变水平。一般来说,种植体周围皮质骨中观察到了最高的冯·米塞斯等效应力值。然而,在这种骨组织中,最大冯·米塞斯等效应力值和冯·米塞斯应变均与其他牙科种植体模型在即刻加载下有限元分析的不同研究中报告的值相似或更低。最大冯·米塞斯应变值在种植体周围松质骨中观察到。然而,在这种骨组织中获得的应变水平可维持骨密度或增加骨密度。三个模拟变量(种植体直径、长度和弹性模量)对冯·米塞斯等效应力和冯·米塞斯应变值具有统计学上的显著影响。

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