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J Dent Res Dent Clin Dent Prospects. 2016;10(3): 148-154. doi: 10.15171/joddd.2016.024
PMID: 27651880        PMCID: PMC5025215

Original Research

Comparison of multiple rebond shear strengths of debonded brackets after preparation with sandblasting and CO<sub>2</sub> laser

Mojgan Kachoei 1, Amir Mohammadi 2, Maziar Esmaili Moghaddam 3, Sahand Rikhtegaran 4, Mahmoud Pourghaznein 5, Sajjad Shirazi 6,7 *

Cited by CrossRef: 11


1- Vartolomei A, Serbanoiu D, Ghiga D, Moldovan M, Cuc S, Pollmann M, Pacurar M. Comparative Evaluation of Two Bracket Systems’ Kinetic Friction: Conventional and Self-Ligating. Materials. 2022;15(12):4304 [Crossref]
2- Tallani S, Singla R, Singla N, Natarajan M, Kukkila J. Clinical performance of light-cured orthodontic adhesives for bonding brackets – an in-vitro study.. F1000Res. 2023;12:1442 [Crossref]
3- Zheng X, Huang X. Evaluation of the re-bond strength of debonded metal and ceramic brackets following Er: YAG laser treatment. BMC Oral Health. 2024;24(1) [Crossref]
4- Grazioli G, Hardan L, Bourgi R, Nakanishi L, Amm E, Zarow M, Jakubowicz N, Proc P, Cuevas-Suárez C, Lukomska-Szymanska M. Residual Adhesive Removal Methods for Rebonding of Debonded Orthodontic Metal Brackets: Systematic Review and Meta-Analysis. Materials. 2021;14(20):6120 [Crossref]
5- Albalawi F. Efficacy of Er, Cr: YSGG laser phosphoric acid gel and Riboflavin activated by Photodynamic therapy on enamel reconditioning rebonded to metallic brackets: An Invitro study. Photodiagnosis and Photodynamic Therapy. 2022;40:103043 [Crossref]
6- Noorollahian S, Zakizade M. Effect of immersion in hydrochloric acid and sodium hypochlorite and autoclave sterilization on the force characteristics of orthodontic nickel-titanium open coils. 2021;18(1):5 [Crossref]
7- Al-Daher M, Sultan K, Hajeer M, Burhan A. Enamel Deproteinization or Sandblasting for Enamel Reconditioning Before Acid Etching to Enhance the Shear Bond Strength of Metallic Brackets in a Third Bonding: An In Vitro Study. 2024; [Crossref]
8- Elabed I, Zheng Z, Zhang Y, Chung C, Li C. The Mechanical and Clinical Properties of Customized Orthodontic Bracket Systems—A Comprehensive Review. JFB. 2024;15(10):299 [Crossref]
9- Atmaca Z, Ulusoy M, Ulusoy C, Relucenti M. Evaluation of Different Adhesive Resin Removal Methods after Debonding Ceramic Orthodontic Molar Tubes: A Scanning Electron Microscope Study. Scanning. 2022;2022:1 [Crossref]
10- Sobouti F, Etemadi A, Seifi S, Bakhshi M, Chiniforush N, Dadgar S. Comparison of shear bond strength of rebonded brackets prepared with different methods of resin removal: an in vitro study. FM. 2022;64(6):938 [Crossref]
11- Mittal S, Chaudhary V, Teja P, Gagain M, Verma A, Kour R. Comparison of Shear Bond Strength of Recycled Ceramic Brackets with Er,Cr:YSGG and Sandblasting: An In Vitro Study. 2023;11(2):56 [Crossref]
12- Sha H, Choi S, Yu H, Hwang C, Cha J, Kim K, Lin C. Debonding force and shear bond strength of an array of CAD/CAM-based customized orthodontic brackets, placed by indirect bonding- An In Vitro study. PLoS ONE. 2018;13(9):e0202952 [Crossref]
13- Li Y, Mei L, Wei J, Yan X, Zhang X, Zheng W, Li Y. Effectiveness, efficiency and adverse effects of using direct or indirect bonding technique in orthodontic patients: a systematic review and meta-analysis. BMC Oral Health. 2019;19(1) [Crossref]
14- Koide K, Tanaka S, Endo T. Use of the Er,Cr:YSGG laser for removing remnant adhesive from the enamel surface in rebonding of orthodontic brackets. Odontology. 2020;108(2):271 [Crossref]
15- Ballard R, Yu Q, Xu X, Armbruster P, Larsen T, Coreil M. Comparison of tensile bond strength of new and rebonded Symetri Clear™ ceramic brackets with Transbond™ XT or BluGloo™, with or without surface treatment: An in vitro study. International Orthodontics. 2021;19(2):252 [Crossref]