Literature DB >> 11455375

In vitro assessment of the mechanical properties of latex and non-latex orthodontic elastics.

K A Russell1, A D Milne, R A Khanna, J M Lee.   

Abstract

The increased incidence of latex allergies has led to the development of non-latex orthodontic products. The purpose of this study was to compare the mechanical properties of latex and non-latex orthodontic elastics. The elastics tested were from 2 manufacturers (GAC and Masel) and made of 2 materials (latex and non-latex). The properties tested included cross-sectional area, breaking force, peak load, peak stress, stiffness, modulus, hysteresis, and 24-hour load relaxation. The data were analyzed with 1-sample t tests, an analysis of variance, and the Fisher PLSD test. Between GAC and Masel, the GAC non-latex elastics had greater breaking forces than did the Masel non-latex elastics. The Masel latex elastics had greater breaking forces than did the Masel non-latex elastics. The GAC non-latex elastics showed more viscoelastic properties than both the GAC latex elastics and the Masel non-latex elastics; however, the Masel elastics were more viscoelastic than the GAC elastics. Forces generated by the elastics decreased over 24 hours to an average load approximating 75% of the manufacturers' values (GAC latex, Masel latex, and Masel non-latex elastics) and to 60% for the GAC non-latex elastics. The mechanical properties of the non-latex elastics were not comparable to those of the latex elastics. Therefore, the clinical choice of elastics should be based on the patient's medical history and the specific mechanical properties of the type of elastic.

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Year:  2001        PMID: 11455375     DOI: 10.1067/mod.2001.114642

Source DB:  PubMed          Journal:  Am J Orthod Dentofacial Orthop        ISSN: 0889-5406            Impact factor:   2.650


  11 in total

1.  Force extension relaxation of medium force orthodontic latex elastics.

Authors:  Daniel J Fernandes; Gisele M A Fernandes; Flavia Artese; Carlos N Elias; Alvaro M Mendes
Journal:  Angle Orthod       Date:  2011-05-26       Impact factor: 2.079

2.  The effect of pH levels on nonlatex vs latex interarch elastics.

Authors:  Paul S Sauget; Kelton T Stewart; Thomas R Katona
Journal:  Angle Orthod       Date:  2011-05-24       Impact factor: 2.079

3.  Elasticity in Elastics-An in-vitro study.

Authors:  Supradeep Kumar Kamisetty; Chakrapani Nimagadda; Madhoom Ponnachi Begam; Raghuveer Nalamotu; Trilok Srivastav; Shwetha Gs
Journal:  J Int Oral Health       Date:  2014-04-26

4.  The influence of pH levels on mechanical and biological properties of nonlatex and latex elastics.

Authors:  Rogério Lacerda Dos Santos; Matheus Melo Pithon; Maria Teresa Villela Romanos
Journal:  Angle Orthod       Date:  2011-12-09       Impact factor: 2.079

5.  Force relaxation characteristics of medium force orthodontic latex elastics: a pilot study.

Authors:  Daniel J Fernandes; Gisele M Abrahão; Carlos N Elias; Alvaro M Mendes
Journal:  ISRN Dent       Date:  2011-07-06

6.  The effect of toothpastes with bleaching agents on the force decay of elastomeric orthodontic chains.

Authors:  Mohammad Behnaz; Kazem Dalaie; Sepanta Hosseinpour; Fatemeh Namvar; Leila Kazemi
Journal:  Eur J Dent       Date:  2017 Oct-Dec

7.  Synergic effect of salivary pH baselines and low pH intakes on the force relaxation of orthodontic latex elastics.

Authors:  Shabnam Ajami; Amin Farjood; Mahbubeh Zare
Journal:  Dent Res J (Isfahan)       Date:  2017 Jan-Feb

8.  An In-vitro Comparison of Force Loss of Orthodontic Non-Latex Elastics.

Authors:  Shiva Alavi; Atusa Rahnama Tabatabaie; Fatemeh Hajizadeh; Alireza Haerian Ardekani
Journal:  J Dent (Tehran)       Date:  2014-01-31

9.  A comparison of orthodontic elastic forces: Focus on reduced inventory.

Authors:  Ameerah Y Mansour
Journal:  J Orthod Sci       Date:  2017 Oct-Dec

10.  Force degradation trend of latex and nonlatex orthodontic elastics after 48 hours stretching.

Authors:  I Gusti Aju Wahju Ardani; Bintiana Susanti; Irwadi Djaharu'ddin
Journal:  Clin Cosmet Investig Dent       Date:  2018-10-11
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