Zandinejad Amirali, Revilla-León Marta, Methani Mohammad Mujtaba, Nasiry Khanlar Leila, Morton Dean
Department of Comprehensive Dentistry, College of Dentistry, Texas A&M University, Dallas, TX 75246, USA.
Department of Biomedical Sciences, College of Dentistry, Texas A&M University, Dallas, TX 75246, USA.
Dent J (Basel). 2021 Oct 8;9(10):115. doi: 10.3390/dj9100115.
(1) Background: This study compared the fracture resistance of additively manufactured monolithic zirconia and bi-layered alumina toughened zirconia crowns on implants. (2) Methods: Maxillary model with a dental implant replacing right second bicuspid was obtained. Custom abutments and full-contour crowns for additively manufactured monolithic zirconia and bi-layered alumina reinforced zirconia crowns ( = 10) were fabricated. The crowns were cemented to implant-supported zirconia abutments and the assembly fixed onto resin blocks. Fracture resistance was measured using a universal testing machine at a crosshead speed of 2 mm/min. A Kruskal-Wallis test was used to analyze the data. (3) Results: Although additively manufactured monolithic zirconia crowns demonstrated a higher mean fracture resistance than bi-layered alumina toughened zirconia crowns, statistical analysis revealed no significant difference in fracture resistance between the two groups. All specimens fractured at the implant-abutment interface. (4) Conclusions: Additively manufactured bi-layered alumina toughened zirconia crowns demonstrated similar fracture resistance to additively manufactured monolithic zirconia crowns when cemented to implant-supported zirconia abutments.
(1) 背景:本研究比较了增材制造的整体式氧化锆和双层氧化铝增韧氧化锆种植体冠的抗折性。(2) 方法:获取一个上颌模型,其中用一颗种植体替代右侧第二双尖牙。制作定制基台以及用于增材制造的整体式氧化锆和双层氧化铝增强氧化锆冠(= 10)的全冠。将冠粘结到种植体支持的氧化锆基台上,并将组件固定到树脂块上。使用万能试验机以2 mm/min的十字头速度测量抗折性。采用Kruskal-Wallis检验分析数据。(3) 结果:尽管增材制造的整体式氧化锆冠显示出比双层氧化铝增韧氧化锆冠更高的平均抗折性,但统计分析表明两组之间的抗折性无显著差异。所有标本均在种植体-基台界面处断裂。(4) 结论:当粘结到种植体支持的氧化锆基台上时,增材制造的双层氧化铝增韧氧化锆冠显示出与增材制造的整体式氧化锆冠相似的抗折性。