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首页> 外文期刊>Brazilian Dental Journal >Retention System and Splinting on Morse Taper Implants in the Posterior Maxilla by 3D Finite Element Analysis
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Retention System and Splinting on Morse Taper Implants in the Posterior Maxilla by 3D Finite Element Analysis

机译:3D有限元分析在上颌后牙莫氏锥种植体的固定系统和夹板

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摘要

The purpose of this study was to evaluate different retention systems (cement- or screw-retained) and crown designs (non-splinted or splinted) of fixed implant-supported restorations, in terms of stress distributions in implants/components and bone tissue, by 3-dimensional (3D) finite element analysis. Four 3D models were simulated with the InVesalius, Rhinoceros 3D, and SolidWorks programs. Models were made of type III bone from the posterior maxillary area. Models included three 4.0-mm-diameter Morse taper (MT) implants with different lengths, which supported metal-ceramic crowns. Models were processed by the Femap and NeiNastran programs, using an axial force of 400 N and oblique force of 200 N. Results were visualized as the von Mises stress and maximum principal stress (σ max ). Under axial loading, there was no difference in the distribution of stress in implants/components between retention systems and splinted crowns; however, in oblique loading, cemented prostheses showed better stress distribution than screwed prostheses, whereas splinted crowns tended to reduce stress in the implant of the first molar. In the bone tissue cemented prostheses showed better stress distribution in bone tissue than screwed prostheses under axial and oblique loading. The splinted design only had an effect in the screwed prosthesis, with no influence in the cemented prosthesis. Cemented prostheses on MT implants showed more favorable stress distributions in implants/components and bone tissue. Splinting was favorable for stress distribution only for screwed prostheses under oblique loading.
机译:这项研究的目的是根据种植体/组件和骨组织中的应力分布,评估固定的种植体支持的修复体的不同固位系统(骨水泥或螺钉固位)和牙冠设计(非夹板或夹板)。 3维(3D)有限元分析。使用InVesalius,Rhinoceros 3D和SolidWorks程序模拟了四个3D模型。由上颌后部区域的III型骨制成模型。模型包括三个具有不同长度的直径为4.0毫米的莫尔斯锥度(MT)植入物,它们支持金属陶瓷冠。通过Femap和NeiNastran程序处理模型,使用的轴向力为400 N,倾斜力为200N。结果以von Mises应力和最大主应力(σmax)可视化。在轴向载荷下,固位系统和夹板冠之间的植入物/组件中的应力分布没有差异。然而,在倾斜载荷下,水泥假体比螺纹假体显示出更好的应力分布,而夹板式牙冠则倾向于减少第一磨牙的植入物中的应力。在骨组织中,在轴向和斜向载荷作用下,水泥假体比螺纹假体在骨组织中的应力分布更好。夹板设计仅对螺纹假体有效,而对骨水泥假体无影响。 MT植入物上的骨水泥假体在植入物/组件和骨组织中显示出更有利的应力分布。夹板仅在倾斜载荷下仅对螺纹假体有利于应力分布。

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