Division of Fixed Prosthodontics, Department of Restorative and Biomaterials Sciences, Meikai University School of Dentistry.
Department of Biomaterials Science and Turku Clinical Biomaterials Center-TCBC, Institute of Dentistry, University of Turku.
Dent Mater J. 2024 Mar 29;43(2):164-171. doi: 10.4012/dmj.2023-194. Epub 2024 Jan 31.
This study investigated the effects of low-temperature degradation (LTD) on the L*, a*, and b* values of highly translucent zirconia crowns. Four types of zirconia disks with different yttria contents (IPS e.max ZirCAD LT, IPS e.max ZirCAD MT, IPS e.max ZirCAD MT Multi, IPS e.max ZirCAD Prime, Ivoclar) and two shades (A2 and BL) were used. A crown was manufactured using four types of zirconia and LTD treated. Color measurements were performed, and the color difference (ΔE) before and after LTD was calculated. The microstructure was determined through X-ray fluorescence and X-ray diffractometry. Highly translucent zirconia crowns showed greater changes in the a* and b* values than in the L* value after LTD, regardless of the shade. The Multi2 crowns exhibited a discernible color change due to the LTD treatment. The X-ray fluorescence results did not reveal any apparent change in the microstructure between sintering programs for all zirconia specimens.
本研究探讨了低温降解(LTD)对高透明度氧化锆冠 L*、a和 b值的影响。使用了四种不同氧化钇含量的氧化锆圆盘(IPS e.max ZirCAD LT、IPS e.max ZirCAD MT、IPS e.max ZirCAD MT Multi、IPS e.max ZirCAD Prime、Ivoclar)和两种色调(A2 和 BL)。使用四种氧化锆制造了一个牙冠,并进行了 LTD 处理。进行了颜色测量,并计算了 LTD 前后的颜色差异(ΔE)。通过 X 射线荧光和 X 射线衍射法确定了微观结构。高透明度氧化锆冠在 LTD 后,无论色调如何,a和 b值的变化都大于 L*值。Multi2 冠由于 LTD 处理而呈现出明显的颜色变化。X 射线荧光结果显示,所有氧化锆样本的烧结程序之间的微观结构没有明显变化。