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无腭板夹板式和非夹板式上颌种植覆盖义齿的生物力学分析:三维有限元分析

Biomechanical Analysis of Palateless Splinted and Unsplinted Maxillary Implant-Supported Overdentures: A Three-Dimensional Finite Element Analysis.

作者信息

Frolo Mária, Řehounek Luboš, Jíra Aleš, Pošta Petr, Hauer Lukáš

机构信息

Department of Stomatology, Faculty of Medicine in Pilsen, Charles University, 304 60 Pilsen, Czech Republic.

Department of Mechanics, Faculty of Civil Engineering, Czech Technical University in Prague, 166 29 Prague, Czech Republic.

出版信息

Materials (Basel). 2023 Jul 26;16(15):5248. doi: 10.3390/ma16155248.

Abstract

The objective of this study was to compare the distribution of stress in the maxillary bone, dental implants, and prosthetic components supporting implant-supported maxillary overdentures with partial palatal coverage, in both splinted and unsplinted designs. Two models of maxillary overdentures were designed using the Exocad Dental CAD program, which included cancellous and cortical bone. The complete denture design and abutments (locator abutments in the unsplinted and Hader bar with Vertix attachments placed distally in the splinted variant) were also designed. The denture material was PEEK (Polyetheretherketone), and the method used to analyze patient-specific 3D X-ray scans was 3D QCT/FEA (three-dimensional quantitative computed tomography-based finite element analysis). Loading was divided into three load cases, in the frontal region (both incisors of the denture) and distal region (both molars and first premolar of the denture). The forces applied were 150 N with an oblique component with a buccal inclination of 35° in the frontal region, and 600 N with a buccal inclination of 5° (molars) or solely vertical (premolar) in the distal region. The model with locator abutments showed higher stresses in all load cases in both analyzed implant variants and in the maxilla. The differences in stress distribution between the splinted and unsplinted variants were more significant in the distal region. According to the results of the present study, the amount of stress in bone tissue and dental implant parts was smaller in the splinted, bar-retained variant. The findings of this study can be useful in selecting the appropriate prosthetic design for implant-supported maxillary overdentures with partial palatal coverage.

摘要

本研究的目的是比较在上颌骨、牙种植体以及支持部分腭部覆盖的种植体支持上颌覆盖义齿的修复组件中,夹板式和非夹板式设计的应力分布情况。使用Exocad Dental CAD程序设计了两种上颌覆盖义齿模型,其中包括松质骨和皮质骨。还设计了全口义齿的结构以及基牙(非夹板式设计中的定位基牙,夹板式设计中在远中位置放置带有Vertix附件的Hader杆)。义齿材料为聚醚醚酮(PEEK),用于分析患者特定三维X线扫描的方法是三维定量计算机断层扫描基于有限元分析(3D QCT/FEA)。加载分为三种加载情况,分别施加于前部区域(义齿的两颗切牙)和远中区域(义齿的两颗磨牙和第一前磨牙)。在前部区域施加的力为150 N,有一个颊侧倾斜35°的斜向分力;在远中区域,施加于磨牙的力为600 N,颊侧倾斜5°,施加于前磨牙的力仅为垂直方向。在两种分析的种植体变体以及上颌骨中,带有定位基牙的模型在所有加载情况下均显示出更高的应力。夹板式和非夹板式变体之间的应力分布差异在远中区域更为显著。根据本研究结果,在夹板式、杆固位变体中,骨组织和牙种植体部分的应力较小。本研究结果有助于为部分腭部覆盖的种植体支持上颌覆盖义齿选择合适的修复设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31a0/10420215/520e0ebc327e/materials-16-05248-g001.jpg

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