首页> 美国卫生研究院文献>The Journal of the Indian Prosthodontic Society >Influence of Implant Surface Topography and Loading Condition on Stress Distribution in Bone Around Implants: A Comparative 3D FEA
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Influence of Implant Surface Topography and Loading Condition on Stress Distribution in Bone Around Implants: A Comparative 3D FEA

机译:种植体表面形貌和载荷条件对种植体周围骨应力分布的影响:比较3D FEA

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摘要

A three-dimensional Finite Element Method was used to study the influence of porous coated surface topography of an implant on stress and strain distribution pattern in the cortical and cancellous bone during axial and non-axial loading. Two implants, one with porous surface topography and one with smooth surface were embedded in separate geometric models of posterior mandibular region which was generated using a CT scan data. Material properties and boundary conditions were applied. Load of 100 and 50 N were applied on to the abutment from axial and non-axial directions respectively. Porous surface topography appeared to distribute stress in a more uniform pattern around the implant with near absence of stress in the apical region of implant. Smooth surfaced implant showed high punching stress at the apex of the implant. The porous coated interface was considered to simulate the shock absorbing behavior of periodontal ligament of natural dentition. Maximum amount of stress concentration was observed in the cortical bone which plays a major role in the dissipation of the stress.
机译:使用三维有限元方法来研究植入物的多孔涂层表面形貌对轴向和非轴向加载过程中皮质和松质骨中应力和应变分布模式的影响。将两种植入物,一种具有多孔表面形貌,另一种具有光滑表面,植入下颌后区域的单独几何模型中,该模型通过CT扫描数据生成。应用材料属性和边界条件。分别从轴向和非轴向将100 N和50 N的载荷施加到基台上。多孔表面形貌似乎在种植体周围以更均匀的方式分布应力,而在种植体的顶端区域几乎没有应力。表面光滑的植入物在植入物的顶点处显示出较高的冲压应力。多孔涂层界面被认为可模拟天然牙列的牙周膜的减震性能。在皮质骨中观察到最大的应力集中量,这在应力消散中起主要作用。

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