Imaging Sci Dent.  2021 Sep;51(3):261-269. 10.5624/isd.20200334.

Evaluation of the radiopacity of restorative materials with different structures and thicknesses using a digital radiography system

Affiliations
  • 1Bursa Oral and Dental Health Hospital, Bursa, Turkey
  • 2Department of Restorative Dentistry, Faculty of Dentistry, Tokat Gaziosman Paşa University, Tokat, Turkey

Abstract

Purpose
The aim of this study was to evaluate the radiopacities of various types of restorative materials with different thicknesses compared with enamel, dentin, and aluminum.
Materials and Methods
Four bulk-fill resins, 2 hybrid ceramics, 2 micro-hybrid resin composites, 6 glass ionomer-based materials, 2 zinc phosphate cements, and an amalgam were used in the study. Twelve disk-shaped specimens were prepared from each of 17 restorative materials with thicknesses of 1 mm, 2 mm, and 4 mm (n=4). All the restorative material specimens with the same thickness, an aluminum (Al) step wedge, and enamel and dentin specimens were positioned on a phosphor storage plate and exposed using a dental X-ray unit. The mean gray values were measured on digital images and converted to equivalent Al thicknesses. Statistical analyses were performed using 2-way analysis of variance and the Bonferroni post hoc test (P<0.05).
Results
Radiopacity was significantly affected by both the thickness and the material type (P<0.05). GCP Glass Fill had the lowest radiopacity value for samples of 1 mm thickness, while Vita Enamic had the lowest radiopacity value for 2-mm-thick and 4-mm-thick samples. The materials with the highest radiopacity values after the amalgam were zinc phosphate cements.
Conclusion
Significant differences were observed in the radiopacities of restorative materials with different thicknesses. Radiopacity was affected by both the material type and thickness.

Keyword

Dental Materials; Radiography; Dental; Digital
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