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首页> 外文期刊>Brazilian Dental Journal >Implant Inclination and Horizontal Misfit in Metallic Bar Framework of Overdentures: Analysis By 3D-FEA Method
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Implant Inclination and Horizontal Misfit in Metallic Bar Framework of Overdentures: Analysis By 3D-FEA Method

机译:覆盖义齿的金属条框架中的植入物倾斜度和水平不匹配:3D-FEA方法分析

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The aim of this study was to evaluate by three-dimensional finite element analysis (3D-FEA) the biomechanics involved in bar-framework system for overdentures. The studied factors were latero-lateral angulation in the right implant (-10, -5, 0, 5 and 10 degrees), and different bar cross-sections (circular, Hader and oval) presenting horizontal misfits (50 or 150 μm) on the opposite implant. Positive angulation (5 and 10 degrees) for implant inclination to mesial position, negative angulation (-5 and -10 degrees) for distal position, and zero degree for parallel implants. The von Mises stresses evaluated the bar, screw and the implant; maximum principal, minimum principal and shear stress analyses evaluated the peri-implant bone tissue. Parallel implants provide lower stress in alveolar bone tissue; mesial inclined bars showed the most negative effect on prosthetic structures and implants. In conclusion, bar cross-section showed no influence on stress distribution for peri-implant bone tissue, and circular bar provided better behavior to the prosthetic system. Higher stress concentration is provided to all system as the misfit increases.
机译:这项研究的目的是通过三维有限元分析(3D-FEA)评估覆盖在覆盖义齿上的条形框架系统中的生物力学。研究的因素是右种植体的后外侧成角度(-10,-5、0、5和10度),并且不同的横断面(圆形,Hader和椭圆形)在水平方向上出现水平失配(50或150μm)。相反的植入物。种植体向中位倾斜的角度为正角(5度和10度),远端位置为负角度(-5和-10度),平行种植体为零度。冯·米塞斯(von Mises)的应力评估了杆,螺钉和植入物;最大主,最小主和剪切应力分析评估了种植体周围骨组织。平行植入物可降低牙槽骨组织的应力;内侧斜筋对假体结构和植入物的影响最大。总之,棒形截面对植入物周围骨组织的应力分布没有影响,圆形棒形体为假体系统提供了更好的性能。随着失配的增加,向所有系统提供更高的应力集中。

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