Literature DB >> 12877422

Effectiveness of composite cure associated with different curing modes of LED lights.

M S Soh1, Adrian U J Yap, K S Siow.   

Abstract

This study compared the effectiveness of cure of two LED (light-emitting diodes) lights (Elipar FreeLight [FL], 3M-ESPE; GC e-Light [EL], GC) to conventional (Max [MX], Dentsply-Caulk [control]), high intensity (Elipar TriLight [TL], 3M-ESPE) and very high intensity (Astralis 10 [AS], Ivoclar Vivadent) halogen lights. The 10 light-curing regimens investigated were: FL1 400 mW/cm2 [40 seconds], FL2 0-400 mW/cm2 [12 seconds] --> 400 mW/cm2 [28 seconds], EL1 750 mW/cm2 [10 pulses x 2 seconds], EL2 350 mW/cm2 [40 seconds], EL3 600 mW/cm2 [20 seconds], EL4 0-600 mW/cm2 [20 seconds] --> 600 mW/cm2 [20 seconds], TL1 800 mW/cm2 [40 seconds], TL2 100-800 mW/cm2 [15 seconds] --> 800 mW/cm2 [25 seconds], AS1 1200 mW/cm2 [10 seconds], MX 400 mW/cm2 [40 seconds]. Effectiveness of cure with the different modes was determined by measuring the top and bottom surface hardness (KHN) of 2-mm thick composite (Z100, [3M-ESPE]) specimens using a digital microhardness tester (n=5, load=500 g; dwell time=15 seconds). Results were analyzed using one-way ANOVA/Scheffe's post-hoc test and Independent Samples t-test (p<0.05). At the top surface, the mean KHN observed with LED lights ranged from 55.42 +/- 1.47 to 68.54 +/- 1.46, while that of halogen lights was 62.64 +/- 1.87 to 73.14 +/- 0.97. At the bottom surface, the mean KHN observed with LED and halogen lights ranged from 46.90 +/- 1.73 to 66.46 +/- 1.18 and 62.26 +/- 1.93 to 70.50 +/- 0.87, respectively. Significant differences in top and bottom KHN values were observed between different curing regimens for the same light, and between LED and halogen lights. Although curing with most modes of EL resulted in significantly lower top and bottom KHN values than the control, no significant difference was observed for the different modes of FL. Hence, the effectiveness of composite cure with LED LCUs is product dependent.

Entities:  

Mesh:

Substances:

Year:  2003        PMID: 12877422

Source DB:  PubMed          Journal:  Oper Dent        ISSN: 0361-7734            Impact factor:   2.440


  6 in total

1.  Depth of cure and mechanical properties of nano-hybrid resin-based composites with novel and conventional matrix formulation.

Authors:  Karina E Frauscher; Nicoleta Ilie
Journal:  Clin Oral Investig       Date:  2011-12-02       Impact factor: 3.573

2.  Effectiveness of light emitting diode and halogen light curing units for curing microhybrid and nanocomposites.

Authors:  Shwetha Choudhary; Bs Suprabha
Journal:  J Conserv Dent       Date:  2013-05

3.  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

4.  Comparison of Depth of Cure, Hardness and Heat Generation of LED and High Intensity QTH Light Sources.

Authors:  Sayed Mostafa Mousavinasab; Ian Meyers
Journal:  Eur J Dent       Date:  2011-07

5.  Effects of light curing method and exposure time on mechanical properties of resin based dental materials.

Authors:  A Riza Alpöz; Fahinur Ertugrul; Dilsah Cogulu; Asli Topaloglu Ak; Metin Tanoglu; Elçin Kaya
Journal:  Eur J Dent       Date:  2008-01

6.  The effect of curing time by conventional quartz tungsten halogens and new light-emitting diodes light curing units on degree of conversion and microhardness of a nanohybrid resin composite.

Authors:  Saijai Tanthanuch; Boonlert Kukiattrakoon
Journal:  J Conserv Dent       Date:  2019 Mar-Apr
  6 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.