Department of Fixed Prosthodontics, Faculty of Dentistry, Cairo University, Cairo, Egypt; Fixed Prosthodontic Department, Faculty of Dentistry, Modern Technology and Information (MTI) University, Cairo, Egypt; Phone: +0128 1300008, e-mail:
Department of Fixed Prosthodontics, Faculty of Dentistry, Cairo University, Nasr city, Cairo, Egypt.
J Contemp Dent Pract. 2022 Nov 1;23(11):1106-1110. doi: 10.5005/jp-journals-10024-3429.
The goal of this study was to evaluate how different fabrication techniques affected the marginal accuracy and internal adaptability of poly (ether ether ketone) (PEEK) molar single crowns.
Twenty PEEK crowns were constructed using two different fabrication techniques, and they were divided into two main groups (PEEK-CAD and PEEK-pressed). PEEK-CAD crowns were numbered from 1 to 10. PEEK-pressed crowns were numbered from 11 to 20. Each group had 10 PEEK crowns, and both were constructed over a master die. For internal fit measurements, silicone replica bodies were built and cut into two halves buccolingually. Marginal accuracy was measured using three evenly spaced landmarks along the specimen's cervical circumference on each surface using a Leica L2 APO* microscope.
In terms of marginal accuracy, the Press group had a statistically significant greater mean marginal gap value than the computer aided-designing (CAD) group. While in terms of internal fit, there was no statistically significant difference in internal fit between the CAD and Press groups. At a significance level of two-tailed -value = 0.21 ( > 0.05).
PEEK-CAD crowns demonstrated higher marginal accuracy and nearly similar internal fit when compared to PEEK-pressed crowns.
PEEK material could be used as a substitute for zirconia for a full coverage posterior restoration.
本研究旨在评估不同制作技术对聚醚醚酮(PEEK)磨牙单冠的边缘精度和内部适应性的影响。
使用两种不同的制作技术构建了 20 个 PEEK 冠,分为两组(PEEK-CAD 和 PEEK 压制)。PEEK-CAD 冠编号为 1 至 10,PEEK 压制冠编号为 11 至 20。每组有 10 个 PEEK 冠,均在主模具上制作。为了进行内部拟合测量,构建了硅橡胶复制体并沿颊舌向将其切成两半。使用 Leica L2 APO*显微镜在每个表面的标本颈周缘上沿三个均匀间隔的标志点测量边缘精度。
在边缘精度方面,压组的平均边缘间隙值明显大于 CAD 组。而在内部拟合方面,CAD 组和压组之间的内部拟合无统计学差异。在双侧检验水平下,-值为 0.21(>0.05)。
与 PEEK 压制冠相比,PEEK-CAD 冠具有更高的边缘精度和几乎相似的内部拟合。
PEEK 材料可替代氧化锆用于全冠后牙修复。