Kelkar Kasturi Chandrashekhar, Bhat Vinaya, Hegde Chethan
Department of Prosthodontics, A B Shetty Memorial Institute of Dental Sciences, Nitte (Deemed to be University), Mangalore, Karnataka, India.
Dent Res J (Isfahan). 2021 Feb 23;18:1. eCollection 2021.
The "All-on-four" concept for treatment of edentulous arches incorporates four implants that are placed in between mental foramina in the mandible. The prosthetic framework is an important parameter in stress/strain concentration at the implants, prosthesis, and the underlying bone. Materials such as titanium, zirconia, and carbon fibers have been used for fabrication of framework in the past. The aim of this study was to analyze the effect of framework materials in the "All-on-four" implant system.
Finite element three-dimensional (3D) model of edentulous mandible was simulated using a computerized tomographic scan data of an edentulous patient. Threaded implants were replicated along with the abutments using 3D modeling software and the framework was designed and simulated using material properties of titanium, zirconia, and polyetheretherketone (PEEK). Axial and nonaxial load of 200 N was applied at the abutment region of right distal implants. The computer-generated numerical values were tabulated and analysed by ANSYS software.
Principal strain, von Mises stress and micromotion were assessed in the peri-implant bone region to evaluate its stress condition. Zirconia framework showed the least stress/strain values at axial and oblique loading. Maximum strain values were seen at the PEEK framework material. Zirconia framework in all models showed the least micromotion/displacement.
The stress distribution pattern at implant-bone interface was influenced by the framework material used. The framework material, loading site, and direction of forces influenced the stresses and displacement at the bone-implant interface.
用于无牙颌治疗的“All-on-four”概念包含在下颌骨颏孔之间植入的4颗种植体。修复体支架是种植体、修复体及下方骨组织应力/应变集中的一个重要参数。过去曾使用钛、氧化锆和碳纤维等材料制作支架。本研究的目的是分析“All-on-four”种植系统中支架材料的影响。
使用一名无牙患者的计算机断层扫描数据模拟无牙下颌骨的有限元三维(3D)模型。使用3D建模软件复制带基台的螺纹种植体,并根据钛、氧化锆和聚醚醚酮(PEEK)的材料特性设计和模拟支架。在右侧远中种植体的基台区域施加200N的轴向和非轴向载荷。将计算机生成的数值制成表格,并通过ANSYS软件进行分析。
评估种植体周围骨区域的主应变、冯·米塞斯应力和微动,以评估其应力状况。氧化锆支架在轴向和斜向加载时显示出最小的应力/应变值。PEEK支架材料出现最大应变值。所有模型中的氧化锆支架显示出最小的微动/位移。
种植体-骨界面的应力分布模式受所用支架材料的影响。支架材料、加载部位和力的方向影响骨-种植体界面的应力和位移。