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Int Endod J ; 45(6): 580-9, 2012 Jun.
Article in English | MEDLINE | ID: mdl-22264204

ABSTRACT

AIM: To compare the efficacy of two rotary NiTi retreatment systems and Hedström files in removing filling material from curved root canals. METHODOLOGY: Curved root canals of 57 extracted teeth were prepared using FlexMaster instruments and filled with gutta-percha and AH Plus. After determination of root canal curvatures and radii in two directions, the teeth were assigned to three identical groups (n = 19). The root fillings were removed with D-RaCe instruments, ProTaper Universal Retreatment instruments or Hedström files. Pre- and postoperative micro-CT imaging was used to assess the percentage of residual filling material as well as the amount of dentine removal. Working time and procedural errors were recorded. Data were analysed using analysis of covariance and analysis of variance procedures. RESULTS: D-RaCe instruments were significantly more effective than ProTaper Universal Retreatment instruments and Hedström files (P < 0.05). Hedström files removed significantly less dentine than the rotary NiTi systems (P < 0.0001). D-RaCe instruments were significantly faster compared to both other groups (P < 0.05). No procedural errors such as instrument fracture, blockage, ledging or perforation were detected in the Hedström group. In the ProTaper group, four instrument fractures and one lateral perforation were observed. Five instrument fractures were recorded for D-RaCe. CONCLUSIONS: D-RaCe instruments were associated with significantly less residual filling material than ProTaper Universal Retreatment instruments and hand files. Hedström files removed significantly less dentine than both rotary NiTi systems. Retreatment with rotary NiTi systems resulted in a high incidence of procedural errors.


Subject(s)
Dental Alloys , Dental Pulp Cavity/ultrastructure , Gutta-Percha/chemistry , Nickel , Root Canal Filling Materials/chemistry , Root Canal Preparation/instrumentation , Titanium , Dental Alloys/chemistry , Dental Pulp Cavity/injuries , Dentin/ultrastructure , Epoxy Resins/chemistry , Equipment Design , Equipment Failure , Humans , Materials Testing , Nickel/chemistry , Retreatment , Surface Properties , Time Factors , Titanium/chemistry , X-Ray Microtomography
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