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核桩材料对强度渐变型氧化锆和二硅酸锂陶瓷双轴弯曲强度的影响:一项体外研究。

The influence of core-build up materials on biaxial flexural strength of strength-gradient zirconia and lithium disilicate ceramics: an in-vitro study.

作者信息

Ereifej Nadia S, Musa Dina B, Oweis Yara G, Abu-Awwad Motasum, Tabnjh Abedelmalek K

机构信息

Department of Prosthetic Dentistry, Faculty of Dentistry, The University of Jordan, Queen Rania Street, Amman, 11942, Jordan.

Private Practice, Amman, Jordan.

出版信息

Sci Rep. 2024 Dec 3;14(1):30115. doi: 10.1038/s41598-024-82030-5.

Abstract

The aim of this study was to investigate the effect of using different core build-up materials on biaxial flexural strength (BFS) of multilayered strength-gradient zirconia ceramic in comparison to lithium disilicate ceramic. Thirty zirconia discs were fabricated from IPS e.max ZirCAD Prime (Zir), 30 discs from IPS e.max CAD (LS2), 30 composite discs were prepared from Tetric N-Ceram (TNC) and 30 from MultiCore Flow (MCF). The ceramic discs were adhesively cemented to composite discs forming 4 groups (n = 15) (Zir-MCF, Zir-TNC, LS2-MCF and LS2-TNC). BFS was determined using a piston-on-3-ball test. The data were statistically analyzed with independent t-tests for significant differences (p = 0.05). In zirconia groups, significantly higher stress values were recorded in the composite and the ceramic for Zir-TNC, compared to Zir-MCF (p < 0.001), while for LS2 groups, no significant differences were found between the 2 composites (p = 0.157) but stresses in LS2 were significantly higher for LS2-TNC than LS2-MCF (p < 0.001). Comparing the values between the ceramic groups, stresses were significantly higher for zirconia than LS2 (p < 0.001). It was concluded that the tested composite materials significantly differ in their strength, which also influenced the strength of the overlying ceramics, and that strength-gradient zirconia had higher strength than LS2. Monolithic strength-gradient zirconia restorations supported by composite core build-up materials with superior mechanical properties can be durable restorative options for high stress-bearing areas.

摘要

本研究的目的是调查与二硅酸锂陶瓷相比,使用不同的核桩材料对多层强度梯度氧化锆陶瓷双轴弯曲强度(BFS)的影响。由IPS e.max ZirCAD Prime(Zir)制作30个氧化锆圆盘,由IPS e.max CAD(LS2)制作30个圆盘,由Tetric N-Ceram(TNC)制备30个复合圆盘,由MultiCore Flow(MCF)制备30个圆盘。将陶瓷圆盘粘结到复合圆盘上,形成4组(n = 15)(Zir-MCF、Zir-TNC、LS2-MCF和LS2-TNC)。使用三球顶压试验测定BFS。对数据进行独立t检验以分析显著差异(p = 0.05)。在氧化锆组中,与Zir-MCF相比,Zir-TNC的复合材料和陶瓷中的应力值显著更高(p < 0.001),而对于LS2组,两种复合材料之间未发现显著差异(p = 0.157),但LS2-TNC中LS2的应力显著高于LS2-MCF(p < 0.001)。比较陶瓷组之间的值,氧化锆的应力显著高于LS2(p < 0.001)。得出的结论是,测试的复合材料在强度上有显著差异,这也影响了其上覆陶瓷的强度,并且强度梯度氧化锆的强度高于LS2。由具有优异机械性能的复合核桩材料支持的整体式强度梯度氧化锆修复体可以成为高应力承载区域耐用的修复选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3782/11615382/7ce3da7aed10/41598_2024_82030_Fig1_HTML.jpg

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