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Study of Biomechanics of Porous Coated Root Form Implant Using Overdenture Attachment: A 3D FEA

机译:使用覆盖义齿附着物的多孔涂层根状植入物的生物力学研究:3D FEA

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摘要

The purpose of this article is to do a three-dimensional finite element stress analysis, in relation to root form implant supported by overdenture attachment, during axial and non-axial loading. Two porous coated Titanium–aluminum–vanadium (Ti–6Al–4V) implants with overdenture abutment were embedded in both simple and 3D model of interforaminal region of mandible. The material properties of tissue ingrowth bonded interface were calculated considering Iso-Strain condition. The masticatory forces: axial load of 35 N, a horizontal load of 10 N, and an oblique load of 120 N, was applied for the two qualities of cancellous bone. It implied that porous topography of the implant led to optimal stress transfer at the tissue ingrowth bonded interface and insignificant punching stress at the apex than a smooth surface implant. The inferior bone quality was deformed even under physiologic loads and showed wider stress pattern. Simulated implant abutment to implant bone interface stress may be significantly affected by the quality of the bone and the surface topography of the implant. The interface is affected to a lesser extent by the prosthetic material properties. Threedimensional anatomical model was more close to reality than the geometry of much simpler altered models.
机译:本文的目的是在轴向和非轴向载荷下,对由覆盖义齿附着的牙根种植体进行三维有限元应力分析。在下颌骨的椎间孔区域的简单模型和3D模型中均嵌入了两个具有覆盖义齿基台的多孔涂层钛-铝-钒(Ti-6Al-4V)植入物。考虑等应变条件,计算了组织向内生长结合界面的材料性能。咀嚼力:两种质量的松质骨均施加35 N的轴向载荷,10 N的水平载荷和120 N的倾斜载荷。这表明,与光滑的表面植入物相比,植入物的多孔形貌可导致在组织向内生长的结合界面处实现最佳应力转移,并且在顶点处产生可忽略的冲压应力。即使在生理负荷下,劣等骨质也会变形,并表现出更宽的应力模式。骨骼的质量和植入物的表面形貌可能会显着影响模拟的植入物基台对植入物的骨骼界面应力的影响。假体材料的性能对界面的影响较小。三维解剖模型比更简单的更改模型的几何形状更接近现实。

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