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Scientific Section

Light energy attenuation through orthodontic ceramic brackets at different irradiation times

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Pages 193-201 | Received 08 Apr 2016, Accepted 18 Jun 2016, Published online: 03 Aug 2016
 

Abstract

Objective: To evaluate the total light energy (TLE) transmission through three types of ceramic brackets with, bracket alone and with the addition of orthodontic adhesive, at different exposure durations, and to compare the microhardness of the cured adhesive. Materials and methods: Three different makes of ceramic brackets, Pure SapphireM, Clarity™ ADVANCEDP and Dual CeramicP were used. Eighteen specimens of each make were prepared and allocated to three groups (n = 6). MARC®-resin calibrator was used to determine the light curing unit (LCU) tip irradiance (mW/cm2) and TLE (J/cm2) transmitted through the ceramic brackets, and through ceramic bracket plus Transbond™ XT Light Cure Adhesive, for 5, 10 and 20 s. Vickers-hardness values at the bottom of the cured adhesive were determined. Statistical analysis used one-way analysis of variance (ANOVA); P = 0.05. Results: TLE transmission rose significantly among all samples with increasing exposure durations. TLE reaching the adhesive- enamel interface was less than 10 J/cm2, and through monocrystalline and polycrystalline ceramic brackets was significantly different (P < 0.05). Pure SapphireM showed the highest amount of TLE transmission and Vickers-hardness values for 5, 10 and 20 s. Conclusion: Following manufacturer’s recommendations, insufficient TLE may be delivered to the adhesive: increasing the exposure durations may be required when adhesive is cured through ceramic brackets. Clinicians are advised to measure the tip irradiance of their LCUs and increase curing time beyond 5 s. Orthodontic clinicians should understand the type of light curing device and the orthodontic adhesive used in their practice.

Acknowledgment

We are indebted to Christopher M. Felix (BSC, Chief Science Office, Bluelight Analytics, Inc., Canada) for his continuing support.

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