Heat Development in the Pulp Chamber During Curing Process of Resin-Based Composite Using Multi-Wave LED Light Curing Unit

Bo Wold Nilsen,1,* Mathieu Mouhat,1,* Torbjørn Haukland,1 Ulf Thore Örtengren,1,2 James B Mercer3 1Department of Clinical Dentistry, UiT - the Arctic University of Norway, Tromsø, Norway; 2Department of Cariology, Institute of Odontology/Sahlgrenska Academy, Gothenburg, Sweden; 3Department of Medica...

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Main Authors: Nilsen BW, Mouhat M, Haukland T, Örtengren UT, Mercer JB
Format: Article in Journal/Newspaper
Language:English
Published: Dove Medical Press 2020
Subjects:
Online Access:https://doaj.org/article/826221f2a707440b8a60f97e392ac30f
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spelling ftdoajarticles:oai:doaj.org/article:826221f2a707440b8a60f97e392ac30f 2023-05-15T18:34:32+02:00 Heat Development in the Pulp Chamber During Curing Process of Resin-Based Composite Using Multi-Wave LED Light Curing Unit Nilsen BW Mouhat M Haukland T Örtengren UT Mercer JB 2020-07-01T00:00:00Z https://doaj.org/article/826221f2a707440b8a60f97e392ac30f EN eng Dove Medical Press https://www.dovepress.com/heat-development-in-the-pulp-chamber-during-curing-process-of-resin-ba-peer-reviewed-article-CCIDE https://doaj.org/toc/1179-1357 1179-1357 https://doaj.org/article/826221f2a707440b8a60f97e392ac30f Clinical, Cosmetic and Investigational Dentistry, Vol Volume 12, Pp 271-280 (2020) dentistry. composite resins. led dental curing light. pulp chamber. temperature Dentistry RK1-715 article 2020 ftdoajarticles 2022-12-31T13:35:10Z Bo Wold Nilsen,1,* Mathieu Mouhat,1,* Torbjørn Haukland,1 Ulf Thore Örtengren,1,2 James B Mercer3 1Department of Clinical Dentistry, UiT - the Arctic University of Norway, Tromsø, Norway; 2Department of Cariology, Institute of Odontology/Sahlgrenska Academy, Gothenburg, Sweden; 3Department of Medical Biology, UiT - the Arctic University of Norway, Tromsø, Norway*These authors contributed equally to this workCorrespondence: Mathieu Mouhat Email mathieu.mouhat@uit.noObjective: The study aimed to investigate factors contributing to heat development during light curing of a flowable bulk-fill resin-based composite (SDRTM, Lot # 602000876, Dentsply Sirona, Konstanz, Germany) (RBC).Materials and Methods: Temperatures were measured with calibrated thermocouples. A multi-wave light-emitting diode (LED) light curing unit (LCU) was used (Ivoclar Vivadent, Schaan, Lichtenstein). In all experiments, the RBC was first cured (cured) for 30 s and, after 5 min of recovery time, received a second LCU irradiation (post-cured) for 30 s. The exothermic reaction was measured by calculating the Δ temperature between cured and post-cured RBC. In a cylinder-shaped polymer mold, temperature was recorded inside of RBC during curing (part 1) and light transmission through RBC during curing was investigated (part 2). Pulpal temperatures were assessed in an extracted third molar during light curing (part 3). Data were statistically analyzed using one-way ANOVA (α=0.05).Results: Increased thickness of RBC led to decreased pulp chamber temperatures. Inside RBC, there was a large variation in heat development between the cured and post-cured groups (p< 0.05). The cured group absorbed more LCU irradiation than the post-cured group.Conclusion: The irradiance of the LCU seemed to be a more important factor than exothermic reaction of RBCs for pulp chamber heat development. Flowable bulk-fill RBCs can act as a pulpal insulator against LCU irradiation, despite their exothermic curing reaction.Keywords: dentistry, composite resins, LED dental ... Article in Journal/Newspaper Tromsø Arctic University of Norway UiT The Arctic University of Norway Directory of Open Access Journals: DOAJ Articles Arctic Norway Tromsø Mathieu ENVELOPE(136.814,136.814,-66.331,-66.331) Haukland ENVELOPE(13.541,13.541,68.200,68.200)
institution Open Polar
collection Directory of Open Access Journals: DOAJ Articles
op_collection_id ftdoajarticles
language English
topic dentistry. composite resins. led dental curing light. pulp chamber. temperature
Dentistry
RK1-715
spellingShingle dentistry. composite resins. led dental curing light. pulp chamber. temperature
Dentistry
RK1-715
Nilsen BW
Mouhat M
Haukland T
Örtengren UT
Mercer JB
Heat Development in the Pulp Chamber During Curing Process of Resin-Based Composite Using Multi-Wave LED Light Curing Unit
topic_facet dentistry. composite resins. led dental curing light. pulp chamber. temperature
Dentistry
RK1-715
description Bo Wold Nilsen,1,* Mathieu Mouhat,1,* Torbjørn Haukland,1 Ulf Thore Örtengren,1,2 James B Mercer3 1Department of Clinical Dentistry, UiT - the Arctic University of Norway, Tromsø, Norway; 2Department of Cariology, Institute of Odontology/Sahlgrenska Academy, Gothenburg, Sweden; 3Department of Medical Biology, UiT - the Arctic University of Norway, Tromsø, Norway*These authors contributed equally to this workCorrespondence: Mathieu Mouhat Email mathieu.mouhat@uit.noObjective: The study aimed to investigate factors contributing to heat development during light curing of a flowable bulk-fill resin-based composite (SDRTM, Lot # 602000876, Dentsply Sirona, Konstanz, Germany) (RBC).Materials and Methods: Temperatures were measured with calibrated thermocouples. A multi-wave light-emitting diode (LED) light curing unit (LCU) was used (Ivoclar Vivadent, Schaan, Lichtenstein). In all experiments, the RBC was first cured (cured) for 30 s and, after 5 min of recovery time, received a second LCU irradiation (post-cured) for 30 s. The exothermic reaction was measured by calculating the Δ temperature between cured and post-cured RBC. In a cylinder-shaped polymer mold, temperature was recorded inside of RBC during curing (part 1) and light transmission through RBC during curing was investigated (part 2). Pulpal temperatures were assessed in an extracted third molar during light curing (part 3). Data were statistically analyzed using one-way ANOVA (α=0.05).Results: Increased thickness of RBC led to decreased pulp chamber temperatures. Inside RBC, there was a large variation in heat development between the cured and post-cured groups (p< 0.05). The cured group absorbed more LCU irradiation than the post-cured group.Conclusion: The irradiance of the LCU seemed to be a more important factor than exothermic reaction of RBCs for pulp chamber heat development. Flowable bulk-fill RBCs can act as a pulpal insulator against LCU irradiation, despite their exothermic curing reaction.Keywords: dentistry, composite resins, LED dental ...
format Article in Journal/Newspaper
author Nilsen BW
Mouhat M
Haukland T
Örtengren UT
Mercer JB
author_facet Nilsen BW
Mouhat M
Haukland T
Örtengren UT
Mercer JB
author_sort Nilsen BW
title Heat Development in the Pulp Chamber During Curing Process of Resin-Based Composite Using Multi-Wave LED Light Curing Unit
title_short Heat Development in the Pulp Chamber During Curing Process of Resin-Based Composite Using Multi-Wave LED Light Curing Unit
title_full Heat Development in the Pulp Chamber During Curing Process of Resin-Based Composite Using Multi-Wave LED Light Curing Unit
title_fullStr Heat Development in the Pulp Chamber During Curing Process of Resin-Based Composite Using Multi-Wave LED Light Curing Unit
title_full_unstemmed Heat Development in the Pulp Chamber During Curing Process of Resin-Based Composite Using Multi-Wave LED Light Curing Unit
title_sort heat development in the pulp chamber during curing process of resin-based composite using multi-wave led light curing unit
publisher Dove Medical Press
publishDate 2020
url https://doaj.org/article/826221f2a707440b8a60f97e392ac30f
long_lat ENVELOPE(136.814,136.814,-66.331,-66.331)
ENVELOPE(13.541,13.541,68.200,68.200)
geographic Arctic
Norway
Tromsø
Mathieu
Haukland
geographic_facet Arctic
Norway
Tromsø
Mathieu
Haukland
genre Tromsø
Arctic University of Norway
UiT The Arctic University of Norway
genre_facet Tromsø
Arctic University of Norway
UiT The Arctic University of Norway
op_source Clinical, Cosmetic and Investigational Dentistry, Vol Volume 12, Pp 271-280 (2020)
op_relation https://www.dovepress.com/heat-development-in-the-pulp-chamber-during-curing-process-of-resin-ba-peer-reviewed-article-CCIDE
https://doaj.org/toc/1179-1357
1179-1357
https://doaj.org/article/826221f2a707440b8a60f97e392ac30f
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