Moraes S L D, Pellizzer E P, Verri F R, Santiago J F, Silva J V L
a Department of Prosthodontics , Pernambuco State University , Recife , Brazil.
Comput Methods Biomech Biomed Engin. 2015;18(7):689-96. doi: 10.1080/10255842.2013.820719. Epub 2013 Aug 15.
The retaining screw of the implant-supported dental prosthesis is the weakest point of the crown/implant system. Furthermore, crown height is another important factor that may increase the lever arm. Therefore, the aim of this study was to assess the stress distribution in implant prosthetic screws with different heights of the clinical crown of the prosthesis using the method of three-dimensional finite element analysis. Three models were created with implants (3.75 mm × 10 mm) and crowns (heights of 10, 12.5 and 15 mm). The results were visualised by means of von Mises stress maps that increased the crown heights. The screw structure exhibited higher levels of stresses in the oblique load. The oblique loading resulted in higher stress concentration when compared with the axial loading. It is concluded that the increase of the crown was damaging to the stress distribution on the screw, mainly in oblique loading.
种植体支持式假牙的固位螺钉是牙冠/种植体系统的最薄弱点。此外,牙冠高度是另一个可能增加力臂的重要因素。因此,本研究的目的是使用三维有限元分析方法评估不同临床牙冠高度的种植修复螺钉中的应力分布。创建了三个包含种植体(3.75毫米×10毫米)和牙冠(高度分别为10、12.5和15毫米)的模型。通过冯·米塞斯应力图将结果可视化,该应力图显示随着牙冠高度增加,螺钉结构在斜向载荷下表现出更高水平的应力。与轴向载荷相比,斜向载荷导致更高的应力集中。得出的结论是,牙冠高度增加对螺钉上的应力分布有损害,主要是在斜向载荷情况下。