STATEMENT OF THE PROBLEM: There is no international standardized guidance to quantify translucency in dentistry. Numerous non-standardized terms are being used to describe the degree of translucency by the manufacturers. This makes it hard for the dental community to find definite and compare easy information.
PURPOSE: To attempt exploring the standardization of the quantification of translucency in dental ceramics by comparing various optical property measurements including Contrast Ratio (CR), Translucency Parameter (TP) and transmission, gloss and surface roughness and by investigating the relationship between thickness, polish grade and translucency.
MATERIAL AND METHODS: Four monolithic zirconia materials were used in this study; VITA-YZ Translucent, High Translucent, Super Translucent and Extra Translucent. IPS e.max CAD HT was used as a control. Specimens for each of these materials were prepared in 125 µm, 70 µm, 15 µm, and 0.5 µm polished surface in the following thicknesses: 1.00 mm, 0.75 mm, 0.50 mm and 0.35 mm thickness. Each group contained 10 specimens and the following tests were completed: transmission, CR and TP using a X-rite Ci6700 spectrophotometer, surface roughness by profilometer and gloss index by a glossmeter. Data was analyzed by using two-way ANOVA for different groups and Tukey’s for paired groups. Coefficient of absorption and loss of reflectance ratio were calculated.
RESULTS: Reducing thickness and increasing polishing grade increase translucency. Material type, thickness and polishing grade significantly affected the translucency. A strong positive (r=0.99) linear correlation between transmission and TP was determined and these have a strong negative (r=-0.99) linear correlation with CR.
CONCLUSION: Thickness, polishing grade and material type are major contributing factors to the translucency of ceramics. E.max HT is significantly more translucent than zirconia. Transmission is viable to be used as a standardized measurement of translucency with standardized material settings of 1mm thickness and optical polishing (polishing grade of 0.5 µm or its equivalent).
Identifer | oai:union.ndltd.org:bu.edu/oai:open.bu.edu:2144/48527 |
Date | 01 April 2024 |
Creators | Mohammad, Mohammad B. |
Contributors | Michalakis, Konstantinos |
Source Sets | Boston University |
Language | en_US |
Detected Language | English |
Type | Thesis/Dissertation |
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