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Peri-implant Bone Biomechanics Featuring Short Implant Design

机译:Peri-植入骨骼生物力学,包括短植入物设计

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This paper presents a study of the effect of short implant features in dental rehabilitation due to the changes of diameter and length of the implant itself. Since computer-aided design (CAD) and finite element methods (FEM) are considered accurate modelling techniques, in consideration of complicated and unique implant design, it has attracted dental researchers to conduct the study through it. FEM allows for a better understanding of stresses and strain along the surfaces of an implant and its surrounding bone. This study aims to investigate the effect of short implant features when it was embedded into the jaw bone with the aid of 3D finite element analysis. The bone is assumed transversely isotropic and still in elastic region which at 25%, 50%, 75% and 100% osseointegration conditions. Bone types II, III and IV were selected with an implant attached and loaded with 100 MPa load. In certain, the short implant results in higher stress distribution along the jaw bone. It showed that less dense bone sustains higher stress. The stress distribution pattern and the value indicated difference between the short and standard implant.
机译:本文由于植入物本身的直径和长度的变化,介绍了牙科康复中短植入物特征的影响。由于计算机辅助设计(CAD)和有限元方法(FEM)被认为是准确的建模技术,考虑到复杂和独特的植入设计,它吸引了牙科研究人员通过它进行研究。 FEM允许更好地理解沿植入物的表面和其周围骨的表面的应力和应变。本研究旨在借助于3D有限元分析旨在探讨植入物特征的效果。骨骼被横向各向同性,仍然存在于25%,50%,75%和100%骨整合条件下的弹性区域。选择骨类型II,III和IV,用植入物连接并装载100MPa负载。在某些情况下,短植入物导致沿着钳口骨的较高的应力分布。它表明较少的骨骼持续较高的压力。应力分布模式和值在短和标准植入物之间的差异。

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