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J Dent Res Dent Clin Dent Prospects. 2018;12(1): 56-62. doi: 10.15171/joddd.2018.009
PMID: 29732022        PMCID: PMC5928475

Original Article

Variations in enamel damage after debonding of two different bracket base designs: An in vitro study

Mohammad Hossein Ahangar Atashi 1, Amir Hooman Sadr Haghighi 1, Parastou Nastarin 1, Sina Ahangar Atashi 1 *

Cited by CrossRef: 12


1- Noorollahian S, Zarei Z, Sadeghalbanaei L, Pakzamir K, Dioguardi M. The Effect of Bonding Surface Design on Shear Bond Strength of 3D-Printed Orthodontic Attachments. International Journal of Dentistry. 2023;2023:1 [Crossref]
2- Gibas-Stanek M, Fudalej P. Does the pain experienced during orthodontic treatment and bracket removal depend on the architecture of the bracket or debonding method?. 2024;47(1) [Crossref]
3- Rodríguez‐Chávez J, Arenas‐Alatorre J, Flores‐Ruiz H, Flores‐Ledesma A, Aguilar‐Pérez F. Evaluation of enamel loss by scanning electron microscopy after debonding brackets place with four different adhesives. Microscopy Res & Technique. 2021;84(5):912 [Crossref]
4- Eichenberger M, Iliadi A, Koletsi D, Eliades G, Verna C, Eliades T. Enamel Surface Roughness after Lingual Bracket Debonding: An In Vitro Study. Materials. 2019;12(24):4196 [Crossref]
5- Agrawal S, Jain M, Chachada A. Comparative evaluation of the differential staining ability of carbol fuchsin, methylene blue, and turmeric GC-MI paste between enamel and adhesive composite remnant after orthodontic debonding using a spectrophotometer. 2024;16(2):97 [Crossref]
6- Gibas-Stanek M, Pihut M. Safe Debonding of Fixed Appliances: A Comparison of Traditional Techniques and LODI Devices on Different Bracket Types in Terms of Enamel Cracks, Site of Bond Failure, and Bracket Reusability. IJERPH. 2021;18(19):10267 [Crossref]
7- Vlasa A, Bud E, Păcurar M, Lazăr L, Streiche L, Bucur S, Cocoș D, Bud A. Effects of Composite Resin on the Enamel after Debonding: An In Vitro Study—Metal Brackets vs. Ceramic Brackets. Applied Sciences. 2021;11(16):7353 [Crossref]
8- Sadeghalbanaei L, Noorollahian S, Zarei Z, Kukiattrakoon B. Bonding Surface Designs in Fixed Orthodontic Attachments. International Journal of Dentistry. 2023;2023:1 [Crossref]
9- Najjar Y, Burhan A, Hajeer M, Nawaya F, Alam M. Effects of the conventional, soft start, and pulse delay modes produced by light-emitting diode device on metal brackets bond strength and enamel damage: An in vitro comparative study. International Orthodontics. 2023;21(3):100787 [Crossref]
10- Hussein A, Yassir Y. Development of a graphene oxide/hydroxyapatite-containing orthodontic primer: An in-vitro study. Materials Chemistry and Physics. 2024;326:129857 [Crossref]
11- Rodríguez‐Chávez J, Arenas‐Alatorre J, Flores‐Ruiz H, Aguilar‐Pérez F, Flores‐Ledesma A, Moreno‐Vargas Y, Pesqueira‐Melgarejo R. Correlation between dental enamel chemical composition and bracket debonding, comparing adhesive systems through a scanning electron microscope. Microscopy Res & Technique. 2022;85(7):2567 [Crossref]
12- Lishna K, Shaloob M, Antony V, Roshan G, Parayaruthottam P, Mohammed N, Raheesh M. Assessment of Enamel Surface Using Scanning Electron Microscope After Debonding Conventional and Self-Ligating Metal and Ceramic Brackets: An In Vitro Study. J Int Oral Health. 2024;16(3):214 [Crossref]
13- Cervantes-Ganoza L, Castro-Ramirez L, Aroste-Andía R, Huamani-Echaccaya J, Ladera-Castañeda M, Cayo-Rojas C. Comparison of the Adhesive Remnant Index and Shear Bond Strength of Different Metal Bracket Bases on Artificially Aged Human Teeth: An In vitro Study. J Int Soc Prev Community Dent. 2024;14(5):396 [Crossref]