Comparison surface characteristics and chemical composition of conventional metallic and Nickel-Free brackets
Author:
Affiliation:
1. Universidade Estadual de São Paulo, Brazil
2. Universidade Federal do Rio Grande do Sul, Brazil
Publisher
FapUNIFESP (SciELO)
Subject
Electrical and Electronic Engineering,Atomic and Molecular Physics, and Optics
Link
http://www.scielo.br/pdf/bor/v29n1/1807-3107-bor-29-1-1807-3107BOR-2015vol290022.pdf
Reference16 articles.
1. In vitro release of nickel and chromium from simulated orthodontic appliances;Park HY;Am J Orthod,1983
2. In Vivo Aging of Orthodontic Alloys:Implications for Corrosion Potential, Nickel Realese, and Biocompatibility;Eliades T;Angle Orthod,2002
3. Hypersensitivity to conventional and to nickel-free orthodontic brackets;Pantuzo MCG;Braz Oral Res,2007
4. Elemental Composition of Brazing Alloys in Metallic Orthodontic Brackets;Zinelis S;Angle Orthod,2004
5. Corrosion susceptibility and nickel realese of nickel titanium wires during clinical appliction;Petoumeno E;J Orofac Orthop,2008
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1. Microhardness and Chemical Composition of Different Metallic Brackets: An In Vitro Study;Dentistry Journal;2023-08-24
2. Qualitative and Quantitative Evaluation of Different Types of Orthodontic Brackets and Archwires by Optical Microscopy and X-ray Fluorescence Spectroscopy;Prosthesis;2021-10-10
3. Color heterogeneity and individual color changes in dentin and enamel bleached in the presence of a metallic orthodontic bracket;Journal of Esthetic and Restorative Dentistry;2020-09-21
4. Surface analysis of metal clips of ceramic self-ligating brackets;The Korean Journal of Orthodontics;2019
5. Salivary levels of nickel, chromium, iron, and copper in patients treated with metal or esthetic fixed orthodontic appliances: A retrospective cohort study;Journal of Trace Elements in Medicine and Biology;2017-03
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