Effect of High‐Power LED Barriers on Shear Bond Strength and Curing Time in Orthodontic Brackets With Single‐Component Adhesive
Yasaman Bozorgnia, Mahla Tak, Maryam Jamali

TL;DR
This study shows that using a cellophane barrier with a high-power LED light reduces the bond strength of orthodontic brackets, requiring longer curing times to achieve acceptable results.
Contribution
The study provides new empirical evidence on the impact of cellophane barriers on orthodontic bonding outcomes.
Findings
Cellophane barriers reduced shear bond strength compared to no barrier.
Groups with cellophane required at least 9 seconds of curing to reach clinically acceptable bond strength.
No significant differences were found in adhesive remnant index across groups.
Abstract
The dental light‐curing unit is a crucial component in bonding brackets. Since it cannot be steam‐sterilized, it is covered with a disposable barrier and disinfected between patients. This study examined the impact of the cellophane layer used to cover the light guides on both the shear bond strength and the adhesive remnant index. Fifty human premolars, extracted for clinical purposes, were randomly allocated into five groups. Three of these groups were cured using a high‐power LED unit with a cellophane layer, applying curing times of 3, 6, and 9 s. The remaining two groups were cured for 3 and 6 s without a cellophane layer. The bracket shear bond strengths were assessed utilizing a universal testing machine. The collected data underwent analysis through a one‐way analysis of variance (ANOVA), followed by Tukey's post hoc test. The group with the highest shear bond strength was…
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Taxonomy
TopicsDental materials and restorations · Orthodontics and Dentofacial Orthopedics · Dental Research and COVID-19
