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Microleakage of composite crowns luted on CAD/CAM-milled human molars: a new method for standardized in vitro tests
- Source :
- Clinical oral investigations. 23(2)
- Publication Year :
- 2017
-
Abstract
- To investigate debonding of full crowns made of CAD/CAM composites, CAD/CAM technology was applied to manufacture standardized test abutments to increase the reproducibility of human teeth used in in vitro studies. A virtual test abutment and the corresponding virtual crown were designed and two STL data sets were generated. Sixty-four human third molars and CAD/CAM blocks were milled using a CNC machine. Crowns of four different composite blocks (Lava Ultimate (LU), Brilliant Crios (BC), Cerasmart (CS), Experimental (EX)) were adhesively bonded with their corresponding luting system (LU: Scotchbond Universal/RelyX Ultimate; BC: One Coat 7 Universal/DuoCem; CS: G-PremioBond/G-Cem LinkForce; EX: Experimental-Bond/Experimental-Luting-Cement). Half of the specimens were chemical-cured (CC) and the others were light-cured (LC). Afterwards, specimens were artificially aged in a chewing simulator (WL-tec, 1 million cycles, 50–500 N, 2 Hz, 37 °C). Finally, a dye penetration test was used to detect debonding. For inspection, the specimens were sliced, and penetration depth was measured with a digital microscope. Data were analyzed with the Mann-Whitney U test. No cases of total debonding were observed after cyclic loading. However, the LC specimens showed a significantly lower amount of leakage than the CC ones (p
- Subjects :
- Molar
Dental Stress Analysis
Materials science
Surface Properties
Composite number
Abutment
CAD
Dental Abutments
In Vitro Techniques
Composite Resins
Light curing
03 medical and health sciences
0302 clinical medicine
Materials Testing
Humans
Dental Restoration Failure
Composite material
General Dentistry
Light-Curing of Dental Adhesives
Dental Leakage
Reproducibility
Dental Debonding
Crowns
Reproducibility of Results
030206 dentistry
Dye penetrant inspection
030220 oncology & carcinogenesis
Dentin-Bonding Agents
Computer-Aided Design
Molar, Third
Adhesive
Subjects
Details
- ISSN :
- 14363771
- Volume :
- 23
- Issue :
- 2
- Database :
- OpenAIRE
- Journal :
- Clinical oral investigations
- Accession number :
- edsair.doi.dedup.....69534804ef0617b1652cba9d90bbc52a