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Multiscale Bone Remodeling Prediction for Fully Porous-Coated (FPC) Dental Implant Supported Prosthesis

机译:多孔涂层(FPC)牙种植体支持的假体的多尺度骨重塑预测

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This paper aims at providing a preliminary understanding in biomechanics with respect to the effect of FPC dental implants on bone remodelling. 2D multi-scale finite element models are created for a typical dental implantation setting. Under a certain mastication force (<200N), a global response from a macro-scale model (without considering coated surface morphology details) is first obtained and then it is transferred to the micro-scale models (with coated surface morphology details and various particle sizes) for micro-scale analysis. A strain energy density (SED) obtained from 2D micro-scale Finite Element Analysis (FEA) is used as a mechanical stimulus to determine the bone remodeling in term of the change in apparent bone densities for cancellous and cortical bones. The change in bone densities is examined as a result of bone remodelling activities over a period of 48 months.
机译:本文旨在就FPC牙科植入物对骨骼重塑的影响提供有关生物力学的初步了解。针对典型的牙科植入设置创建2D多尺度有限元模型。在一定的咀嚼力(<200N)下,首先获得宏观模型的整体响应(不考虑涂层表面形态细节),然后将其转移到微观模型(具有涂层表面形态细节和各种颗粒)尺寸)进行微观分析。从二维微尺度有限元分析(FEA)获得的应变能密度(SED)用作机械刺激,根据松质骨和皮质骨的表观骨密度变化来确定骨重塑。在48个月的时间内,通过骨重塑活动检查了骨密度的变化。

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