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      Shear bond strength of rebonded brackets after removal of adhesives with Er,Cr:YSGG laser.

      Odontology / the Society of the Nippon Dental University
      Adhesiveness, Aluminum Oxide, chemistry, Curing Lights, Dental, classification, Dental Bonding, Dental Debonding, instrumentation, Dental Etching, methods, Dental Stress Analysis, Equipment Failure, Equipment Reuse, Humans, Lasers, Solid-State, Materials Testing, Microscopy, Electron, Scanning, Orthodontic Appliance Design, Orthodontic Brackets, Resin Cements, radiation effects, Shear Strength, Stress, Mechanical, Surface Properties

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          Abstract

          This study was conducted to examine the bond strength of rebonded orthodontic brackets after adhesive residuals on the surface of the bracket bases were removed by Er,Cr:YSGG lasers. Seventy-six brackets bonded to premolars with a self-etching primer adhesive system were equally divided into four groups after the first debonding with the bracket bases (Group 1) untreated, and treated by (Group 2) Er,Cr:YSGG laser, (Group 3) sandblaster, and (Group 4) Er,Cr:YSGG laser/sandblaster. The treated brackets were rebonded to the new premolars in the same manner as the first-stage experiment. The shear bond strengths were measured, with the bonding/debonding procedures repeated once after the first debonding, and the bracket/adhesive failure modes were evaluated after each debonding. The treated bracket base surfaces were observed under a scanning electron microscopy (SEM). The mean rebond strengths were significantly lower in group 1 than in other groups, and there were no significant differences between the other groups. The mean initial bond strength was significantly higher than the mean rebond strength in group 1 but there was no significant difference between the two in the other three groups. Failures at the bracket-adhesive interface occurred frequently at second debonding in group 1. Under the SEM, residual adhesive was removed from the bracket bases by Er,Cr:YSGG laser, while adhesive remnant was seen underneath the meshwork of the bracket bases and microroughness appeared on the meshwork after sandblasting. Er,Cr:YSGG laser certainly could serve the purpose of promoting the use of recycled orthodontic brackets.

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