Journal of Biomechanics
Volume 38, Issue 5 , Pages 1107-1113, May 2005

In vivo debonding strength and enamel damage in two orthodontic debonding methods

  • Tamar Brosh

      Affiliations

    • Corresponding Author InformationCorresponding author. Tel.: +972-3640-9303 Ext.92; fax: +972-3640-9250
  • ,
  • Assaf Kaufman

      Affiliations

    • Based on a thesis submitted to the School of Dental Medicine, in partial fulfillment of the requirements for DMD degree.
  • ,
  • Alex Balabanovsky

      Affiliations

    • Based on a thesis submitted to the School of Dental Medicine, in partial fulfillment of the requirements for Diploma in Orthodontics.
  • ,
  • Alexander D. Vardimon

Department of Orthodontics, School of Dental Medicine, The Maurice & Gabriela Goldschleger, Tel Aviv University, Tel Aviv 69978, Israel

Accepted 19 May 2004. published online 19 August 2004.

Abstract 

Bracket debonding strength related to diverse debonding methods and enamel demage has not been assessed in vivo. The study hypothetized a direct relationship between these three parameters. Debonding strength was measured clinically in the wings method and base method on 50 patients in a split mouth method using a calibrated debonding plier. Brackets from 30 of these patients were scanned in SEM and EDAX for adhesive remnant index and enamel calcium remnants. Base method debonding force was significantly greater than wings method (163.5±68.7N, 106.1±66.2N, respectively, p<0.001). A positive adhesive remnant index score was found in both methods (68.7%, 66.7%, respectively). Debonding strength vs. adhesive remnant index or calcium index scores were not correlated. However, the latter two were significantly correlated (0.524<R<0.895, p<0.031). Half of the debonding failures developed at the adhesive enamel interface. The results warnts the potential of enamel damage during debonding.

Keywords:  Brackets, Debonding force, Debonding strength, ARI, Enamel damage

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PII: S0021-9290(04)00264-7

doi:10.1016/j.jbiomech.2004.05.025

Journal of Biomechanics
Volume 38, Issue 5 , Pages 1107-1113, May 2005