Literature DB >> 12593963

Polymerization and light-induced heat of dental composites cured with LED and halogen technology.

Alexander Uhl1, Robin W Mills, Klaus D Jandt.   

Abstract

Most commercial light curing units (LCUs) for dental applications use conventional halogen bulbs. Commercial LCUs using light emitting diodes (LEDs) have recently become established on the market, even though some aspects of their performance have not been fully investigated. Temperature rise of dental composites during the light-induced polymerization is considered to be a potential hazard for the pulp of the tooth. This study, therefore, investigated the temperature rise in three different composites (Z100, Durafill, Solitaire2) in two shades (A2, A4) polymerized for 40s with two LED LCUs (Freelight, custom-made LED LCU prototype) and two halogen LCUs (Trilight, Translux). The Trilight was used in the standard and soft-start mode. The temperature rise within the composites were recorded for 60s with a thermocouple and also observed with a high-resolution infrared (HRIR) camera. The factors LCU (p < 0.0001), composite (p < 0.0001) and shade (p = 0.0014) had statistically significant influences on the temperature rise. All composites cured with the halogen LCUs reached at a depth of 2 mm, a statistically significant higher temperature (p < 0.0001) than those cured with the LED LCUs. Only one composite showed a statistically significant lower temperature rise for the halogen LCUs at the 95% confidence level, when the soft-start mode was used instead of the standard mode. In general, the composites with the lighter shade (A2) reached higher temperatures than the darker shade (A4), if the LED LCUs were used. When the halogen LCUs were used, the situation was reversed, the composites with the darker shade (A4) reaching higher temperatures than the lighter shade (A2). This study showed that a HRIR camera represents a powerful tool for the observation of temperature propagation on small samples. This study also showed that LED LCUs represent a viable alternative to halogen LCUs for the light polymerization of dental composites because of a generally lower temperature increase within the composite. Copyright 2003 Elsevier Science Ltd.

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Year:  2003        PMID: 12593963     DOI: 10.1016/s0142-9612(02)00585-9

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  16 in total

1.  Temperature rise and degree of photopolymerization conversion of nanocomposites and conventional dental composites.

Authors:  Mohammad Atai; Fariba Motevasselian
Journal:  Clin Oral Investig       Date:  2008-12-16       Impact factor: 3.573

2.  Characterization of heat emission of light-curing units.

Authors:  Mohammed A Wahbi; F A Aalam; F I Fatiny; S A Radwan; I Y Eshan; K H Al-Samadani
Journal:  Saudi Dent J       Date:  2012-03-09

3.  The effects of extended curing time and radiant energy on microhardness and temperature rise of conventional and bulk-fill resin composites.

Authors:  Matej Par; Igor Repusic; Hrvoje Skenderovic; Ognjen Milat; Jelena Spajic; Zrinka Tarle
Journal:  Clin Oral Investig       Date:  2019-01-28       Impact factor: 3.573

4.  Temperature rise during Er:YAG cavity preparation of primary enamel.

Authors:  Marta Maria Martins Giamatei Contente; Fabrício Augusto de Lima; Rodrigo Galo; Jesus Djalma Pécora; Luciano Bachmann; Regina Guenka Palma-Dibb; Maria Cristina Borsatto
Journal:  Lasers Med Sci       Date:  2010-08-25       Impact factor: 3.161

5.  Influence of light energy density on heat generation during photoactivation of dental composites with different dentin and composite thickness.

Authors:  Ricardo Danil Guiraldo; Simonides Consani; Aline Simprine De Souza; Rafael Leonardo Xediek Consani; Mario Alexandre Coelho Sinhoreti; Lourenço Correr-Sobrinho
Journal:  J Appl Oral Sci       Date:  2009 Jul-Aug       Impact factor: 2.698

6.  Halogen and LED light curing of composite: temperature increase and Knoop hardness.

Authors:  L F Schneider; S Consani; L Correr-Sobrinho; A B Correr; M A Sinhoreti
Journal:  Clin Oral Investig       Date:  2006-01-10       Impact factor: 3.573

7.  Effect of Additional Light Curing on Colour Stability of Composite Resins.

Authors:  Kubra Alan Unsal; Emel Karaman
Journal:  Int Dent J       Date:  2021-08-16       Impact factor: 2.607

8.  Thermal analysis of bulk filled composite resin polymerization using various light curing modes according to the curing depth and approximation to the cavity wall.

Authors:  Hoon-Sang Chang; Kyu-Jeong Cho; Su-Jung Park; Bin-Na Lee; Yun-Chan Hwang; Won-Mann Oh; In-Nam Hwang
Journal:  J Appl Oral Sci       Date:  2013 Jul-Aug       Impact factor: 2.698

9.  The effects of halogen and light-emitting diode light curing on the depth of cure and surface microhardness of composite resins.

Authors:  Batu Can Yaman; Begüm Güray Efes; Can Dörter; Yavuz Gömeç; Dina Erdilek; Sami Büyükgökçesu
Journal:  J Conserv Dent       Date:  2011-04

10.  Temperature rise within the pulp chamber during composite resin polymerisation using three different light sources.

Authors:  A Santini; C Watterson; V Miletic
Journal:  Open Dent J       Date:  2008-12-05
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