Karaer Oğuzcan, Yamaguchi Satoshi, Imazato Satoshi, Terzioglu Hakan
Department of Prosthodontics, Ankara University Faculty of Dentistry, Ankara, Turkey.
Department of Biomaterials Science, Osaka University Graduate School of Dentistry, Osaka, Japan.
J Prosthodont. 2023 Mar;32(3):259-266. doi: 10.1111/jopr.13531. Epub 2022 Jun 17.
The aim of this study was to evaluate the mechanical behavior of an implant-supported crown made using computer-aided design and computer-aided manufacturing (CAD-CAM) resin composite (RC) blocks in the posterior region.
Four commercially available CAD-CAM RC blocks were used in this study: Cerasmart 300 (CS300; GC, Tokyo, Japan), Katana Avencia P Block (KAP; Kuraray Noritake Dental, Niigata, Japan); KZR HR3 Gamma Theta (HR3; Yamakin, Osaka, Japan), and Estelite P block (ESP; Tokuyama Dental, Tokyo, Japan). Katana Zirconia STML (ST; Kuraray Noritake Dental) was used as the control group. The elastic moduli of each material were determined by a three-point bending test. After the CAD models were designed, two different loading scenarios (oblique, vertical) were created. 3D finite element analysis was conducted with the prepared models.
The elastic modulus of the material utilized for the implant restorations did not cause any change in the stresses transmitted to the implant or peripheral bone. An important difference was detected in the abutment-crown junction area. The minimum von Mises value at the abutment-crown interface was obtained in ST, which has the closest elastic modulus to the titanium abutment.
The 3D finite element model designed in this study was used to demonstrate that implant-supported crowns fabricated with four different CAD-CAM RCs showed no critical stress concentrations in the bone or implant under all loading conditions. These results suggest that CAD-CAM RC blocks could be used as an alternative material for implant-supported restorations in the posterior region in terms of stress distribution.
本研究旨在评估使用计算机辅助设计和计算机辅助制造(CAD-CAM)树脂复合材料(RC)块在后牙区制作的种植体支持冠的力学行为。
本研究使用了四种市售的CAD-CAM RC块:Cerasmart 300(CS300;GC,日本东京)、Katana Avencia P Block(KAP;可乐丽诺瑞特牙科,日本新潟)、KZR HR3 Gamma Theta(HR3;日本大阪山金)和Estelite P block(ESP;日本东京德山牙科)。将Katana氧化锆STML(ST;可乐丽诺瑞特牙科)用作对照组。通过三点弯曲试验测定每种材料的弹性模量。在设计CAD模型后,创建了两种不同的加载场景(斜向、垂直)。对制备好的模型进行三维有限元分析。
用于种植体修复的材料的弹性模量并未导致传递至种植体或周边骨的应力发生任何变化。在基台-冠交界处检测到一个重要差异。在与钛基台弹性模量最接近的ST中,基台-冠界面处的最小冯·米塞斯值。
本研究设计的三维有限元模型用于证明,用四种不同的CAD-CAM RC制作的种植体支持冠在所有加载条件下在骨或种植体中均未显示出临界应力集中。这些结果表明,就应力分布而言,CAD-CAM RC块可作为后牙区种植体支持修复的替代材料。