Real-time Light Transmittance Monitoring for Determining Polymerization Completeness of Conventional and Bulk Fill Dental Composites

Author:

Par M1,Repusic I2,Skenderovic H3,Sever E Klaric4,Marovic D5,Tarle Z6

Affiliation:

1. Matej Par, DMD, private dental practice, Zagreb, Croatia

2. Igor Repusic, DMD, Zagreb, Croatia

3. Hrvoje Skenderovic, PhD, Institute of Physics, Laboratory for Femtosecond Spectroscopy, Zagreb, Croatia

4. Eva Klaric Sever, PhD, DMD, School of Dental Medicine, Department of Endodontics and Restorative Dentistry, Zagreb, Croatia

5. Danijela Marovic, PhD, DMD, School of Dental Medicine, University of Zagreb, Department of Endodontics and Restorative Dentistry, Zagreb, Croatia

6. Zrinka Tarle, PhD, DMD, professor, School of Dental Medicine, Department of Endodontics and Restorative Dentistry, Zagreb, Croatia

Abstract

SUMMARY Objectives: To monitor the real-time changes in light transmittance during composite curing and to use transmittance data to determine the curing times required for a complete polymerization. Methods: Three conventional and three bulk fill composites were cured with two light-emitting diode curing units at layer thicknesses of 2 mm and 4 mm. The real-time light transmittance data were collected by a UV-Vis spectrometer in the wavelength range of 350-550 nm, plotted against time (t) and fitted to an exponential function f(t), whose first derivative ΔT(t) = df(t)/dt represented the rate of transmittance change. As the changing transmittance reflects structural changes that occur during polymerization, ΔT(t) > 0 was considered to indicate an ongoing polymerization, whereas ΔT(t) values approaching zero suggested a complete polymerization. This principle was used to determine times required for a complete polymerization (tcomplete) for each material/thickness/curing unit combination. Results: Light transmittance was significantly influenced by the material type, sample thickness, and curing unit, amounting to 2.9%-27.0% for the bulk fill and 0.7%-16.7% for the conventional composites. The values of tcomplete amounted to 15.3-23.3 seconds for the bulk fill composites at 2 mm, 20.2-33.3 seconds for the conventional composites at 2 mm, 26.9-42.1 seconds for the bulk fill composites at 4 mm, and 40.1-59.8 seconds for the conventional composites at 4 mm. Additionally, an exponential relationship was discovered between the light transmittance and tcomplete. Conclusions: Some of the tcomplete values considerably exceeded the curing times recommended by the manufacturers.

Publisher

Operative Dentistry

Subject

General Dentistry

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