Cho Mi-Hyang, Seol Hyo-Joung
Department of Dental Lab, Wonkwang Health Science University, Iksan-si 54538, Republic of Korea.
Department of Dental Materials, Dental and Life Science Institute, School of Dentistry, Pusan National University, Yangsan-si 50612, Republic of Korea.
Materials (Basel). 2022 Dec 21;16(1):41. doi: 10.3390/ma16010041.
The differences in the optical properties of multi-layered zirconia with and without yttria-gradient are not fully understood. This study aimed to evaluate and compare the optical properties, related microstructures, and phase fractions of multi-layered zirconia with and without yttria-gradient. For this, multi-layered zirconia of 5 mol% yttria (5Y) stabilized (Katana STML) and 4Y/5Y stabilized (e.max MT Multi) were cut layerwise, sintered, and analyzed using the opalescence parameter (OP), average transmittance (AT%), translucency parameter (TP), and contrast ratio (CR). The average grain size and phase fractions were obtained from field-emission scanning electron micrographs and X-ray diffraction patterns, respectively. Although the TP values of Katana STML and e.max MT Multi did not show a significant difference (except for transition layer 1), the results of AT and CR showed that the translucency of e.max MT Multi was slightly higher than that of Katana STML (p < 0.05). The opalescence gradient was higher in Katana STML than in the e.max MT Multi. In both zirconia types, translucency increased from the dentin to enamel layer based on the AT, TP, and CR results, while OP decreased (p < 0.05). The higher translucency from the dentin to enamel layer in Katana STML was caused by the pigmentation gradient, while in e.max MT Multi, it was caused by the difference in phase fraction and the pigmentation gradient.
具有和不具有氧化钇梯度的多层氧化锆的光学性能差异尚未完全明确。本研究旨在评估和比较具有和不具有氧化钇梯度的多层氧化锆的光学性能、相关微观结构和相分数。为此,将5摩尔%氧化钇(5Y)稳定化的(Katana STML)和4Y/5Y稳定化的(e.max MT Multi)多层氧化锆逐层切割、烧结,并使用乳光参数(OP)、平均透光率(AT%)、半透明度参数(TP)和对比度(CR)进行分析。平均晶粒尺寸和相分数分别从场发射扫描电子显微镜图像和X射线衍射图谱中获得。尽管Katana STML和e.max MT Multi的TP值没有显示出显著差异(过渡层1除外),但AT和CR的结果表明,e.max MT Multi的半透明度略高于Katana STML(p < 0.05)。Katana STML中的乳光梯度高于e.max MT Multi。根据AT、TP和CR结果,在两种类型的氧化锆中,从牙本质层到釉质层半透明度增加,而OP降低(p < 0.05)。Katana STML中从牙本质层到釉质层较高的半透明度是由色素沉着梯度引起 的,而在e.max MT Multi中,则是由相分数差异和色素沉着梯度引起的。