Department of Prosthodontics, Ankara 75th year Oral and Dental Health Hospital, Ankara, Türkiye.
Department of Prosthodontics, Faculty of Dentistry, Istanbul Okan University, Istanbul, Türkiye.
J Prosthodont. 2024 Jun;33(5):497-505. doi: 10.1111/jopr.13732. Epub 2023 Jul 20.
To evaluate the effect of restorative materials with or without resin content, modeled on zirconia and titanium abutment materials, on the stress distribution on the alveolar bone, implant, and prosthetic crowns with a 3D finite element stress analysis.
Titanium and zirconia abutments were combined with three implant-supported crown materials (polymer infiltrated hybrid ceramic (PICN), lithium disilicate (LD), and zirconia-reinforced lithium silicate (ZLS)) to create six experimental groups. The 40 × 30 × 20 mm alveolar bone, 3.75 × 10 mm implant, esthetic abutment, and maxillary first premolar crown bonded over the abutment were the components of the finite element models. On the lingual cusp of the crown, the 150 N occlusal loading was applied in the buccolingual direction at a 30° angle. Equivalent von Mises stress and maximum and minimum principal stresses were used for both the qualitative and quantitative evaluation of the stress distribution of the created models.
The von Mises stress in implant and abutment did not differ according to the crown materials. The use of a zirconia abutment resulted in higher von Mises stress values in the abutment but lower stress values in the implant. The highest stress values were obtained in ZLS (196.65 MPa) and LD (194.05 MPa) crowns. The use of titanium abutments, regardless of crown materials, resulted in higher von Mises stress values in restorative crowns than in zirconia abutments. The principal stress values in alveolar bone showed similar distribution and concentration in all models.
Changes in crown material did not affect stress distribution in the implant and peripheral bone. However, the zirconia esthetic abutment resulted in a lower stress concentration on the implant.
通过三维有限元应力分析,评估具有或不具有树脂含量的修复材料在模拟氧化锆和钛基台材料时对牙槽骨、种植体和修复体冠的应力分布的影响。
将钛和氧化锆基台与三种种植体支持的冠材料(聚合物渗透混合陶瓷(PICN)、锂二硅(LD)和氧化锆增强锂硅(ZLS))结合,创建了六个实验组。牙槽骨的 40×30×20mm、3.75×10mm 种植体、美学基台和固定在基台上的上颌第一前磨牙冠是有限元模型的组成部分。在冠的舌尖上,以 30°的角度向颊舌方向施加 150N 的牙合接触载荷。使用等效 von Mises 应力和最大和最小主应力对创建模型的应力分布进行定性和定量评估。
冠材料对种植体和基台的 von Mises 应力没有影响。使用氧化锆基台会导致基台的 von Mises 应力值升高,但种植体的应力值降低。ZLS(196.65 MPa)和 LD(194.05 MPa)冠获得的应力值最高。使用钛基台,无论冠材料如何,修复体冠的 von Mises 应力值都高于氧化锆基台。牙槽骨的主应力值在所有模型中表现出相似的分布和集中。
冠材料的变化不会影响种植体和周围骨的应力分布。然而,氧化锆美学基台会导致种植体上的应力集中降低。