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Temperature changes in the pulp chamber induced by polymerization of resin-based dental restoratives following simulated direct pulp capping

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2019
2372.pdf (676.6Kb)
Authors
Petrović, Violeta
Stasić, Jovana
Komlenić, Vojislav
Savić-Stanković, Tatjana
Latković, Marina
Miletić, Vesna
Article (Published version)
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Abstract
The objective of this study was to measure temperature changes in the pulp chamber induced by polymerization of resin-based dental restoratives following a simulated procedure of direct pulp capping. Class I cavities with a microperforation at the pulp horn were prepared in extracted human molar teeth. The complete procedure of direct pulp capping and cavity restoration was performed with the root part of extracted teeth fixed in a water bath at 37 degrees C. Mineral trioxide aggregate, bioactive dentin substitute or calcium-hydroxide paste were used as pulp capping materials. Cavities were restored with a light-cured or chemically-cured resin-modified glass ionomer, universal adhesive and a bulk-fill composite, cured with a high-intensity LED unit. Pulp capping materials caused a slight temperature decrease. Lower temperature increase was recorded during light-curing of the glass ionomer liner after direct capping with mineral trioxide aggregate and calcium-hydroxide than that recorde...d for the bioactive dentin substitute. Adhesive light-curing increased temperature in all groups with higher mean temperatures in groups with chemically-cured as compared to those for the light-cured glass ionomer liner. Direct pulp capping with mineral trioxide aggregate or calcium-hydroxide followed by the light-cured resin-modified glass ionomer liner and a bonded bulk-fill composite restoration induced temperature changes below the potentially adverse threshold of 42.5 degrees C.

Keywords:
Calcium silicate cement / glass ionomer cement / dental adhesive / resin-based composite / polymer / pulp temperature
Source:
Hemijska Industrija, 2019, 73, 4, 239-248
Publisher:
  • Savez hemijskih inženjera, Beograd
Funding / projects:
  • Development and Application of Methods and Materials for Monitoring New Organic Contaminants, Toxic Compounds and Heavy Metals (RS-172007)

DOI: 10.2298/HEMIND190504020P

ISSN: 0367-598X

WoS: 000484048300004

Scopus: 2-s2.0-85073375336
[ Google Scholar ]
1
1
URI
https://smile.stomf.bg.ac.rs/handle/123456789/2377
Collections
  • Radovi istraživača
Institution/Community
Stomatološki fakultet
TY  - JOUR
AU  - Petrović, Violeta
AU  - Stasić, Jovana
AU  - Komlenić, Vojislav
AU  - Savić-Stanković, Tatjana
AU  - Latković, Marina
AU  - Miletić, Vesna
PY  - 2019
UR  - https://smile.stomf.bg.ac.rs/handle/123456789/2377
AB  - The objective of this study was to measure temperature changes in the pulp chamber induced by polymerization of resin-based dental restoratives following a simulated procedure of direct pulp capping. Class I cavities with a microperforation at the pulp horn were prepared in extracted human molar teeth. The complete procedure of direct pulp capping and cavity restoration was performed with the root part of extracted teeth fixed in a water bath at 37 degrees C. Mineral trioxide aggregate, bioactive dentin substitute or calcium-hydroxide paste were used as pulp capping materials. Cavities were restored with a light-cured or chemically-cured resin-modified glass ionomer, universal adhesive and a bulk-fill composite, cured with a high-intensity LED unit. Pulp capping materials caused a slight temperature decrease. Lower temperature increase was recorded during light-curing of the glass ionomer liner after direct capping with mineral trioxide aggregate and calcium-hydroxide than that recorded for the bioactive dentin substitute. Adhesive light-curing increased temperature in all groups with higher mean temperatures in groups with chemically-cured as compared to those for the light-cured glass ionomer liner. Direct pulp capping with mineral trioxide aggregate or calcium-hydroxide followed by the light-cured resin-modified glass ionomer liner and a bonded bulk-fill composite restoration induced temperature changes below the potentially adverse threshold of 42.5 degrees C.
PB  - Savez hemijskih inženjera, Beograd
T2  - Hemijska Industrija
T1  - Temperature changes in the pulp chamber induced by polymerization of resin-based dental restoratives following simulated direct pulp capping
VL  - 73
IS  - 4
SP  - 239
EP  - 248
DO  - 10.2298/HEMIND190504020P
ER  - 
@article{
author = "Petrović, Violeta and Stasić, Jovana and Komlenić, Vojislav and Savić-Stanković, Tatjana and Latković, Marina and Miletić, Vesna",
year = "2019",
abstract = "The objective of this study was to measure temperature changes in the pulp chamber induced by polymerization of resin-based dental restoratives following a simulated procedure of direct pulp capping. Class I cavities with a microperforation at the pulp horn were prepared in extracted human molar teeth. The complete procedure of direct pulp capping and cavity restoration was performed with the root part of extracted teeth fixed in a water bath at 37 degrees C. Mineral trioxide aggregate, bioactive dentin substitute or calcium-hydroxide paste were used as pulp capping materials. Cavities were restored with a light-cured or chemically-cured resin-modified glass ionomer, universal adhesive and a bulk-fill composite, cured with a high-intensity LED unit. Pulp capping materials caused a slight temperature decrease. Lower temperature increase was recorded during light-curing of the glass ionomer liner after direct capping with mineral trioxide aggregate and calcium-hydroxide than that recorded for the bioactive dentin substitute. Adhesive light-curing increased temperature in all groups with higher mean temperatures in groups with chemically-cured as compared to those for the light-cured glass ionomer liner. Direct pulp capping with mineral trioxide aggregate or calcium-hydroxide followed by the light-cured resin-modified glass ionomer liner and a bonded bulk-fill composite restoration induced temperature changes below the potentially adverse threshold of 42.5 degrees C.",
publisher = "Savez hemijskih inženjera, Beograd",
journal = "Hemijska Industrija",
title = "Temperature changes in the pulp chamber induced by polymerization of resin-based dental restoratives following simulated direct pulp capping",
volume = "73",
number = "4",
pages = "239-248",
doi = "10.2298/HEMIND190504020P"
}
Petrović, V., Stasić, J., Komlenić, V., Savić-Stanković, T., Latković, M.,& Miletić, V.. (2019). Temperature changes in the pulp chamber induced by polymerization of resin-based dental restoratives following simulated direct pulp capping. in Hemijska Industrija
Savez hemijskih inženjera, Beograd., 73(4), 239-248.
https://doi.org/10.2298/HEMIND190504020P
Petrović V, Stasić J, Komlenić V, Savić-Stanković T, Latković M, Miletić V. Temperature changes in the pulp chamber induced by polymerization of resin-based dental restoratives following simulated direct pulp capping. in Hemijska Industrija. 2019;73(4):239-248.
doi:10.2298/HEMIND190504020P .
Petrović, Violeta, Stasić, Jovana, Komlenić, Vojislav, Savić-Stanković, Tatjana, Latković, Marina, Miletić, Vesna, "Temperature changes in the pulp chamber induced by polymerization of resin-based dental restoratives following simulated direct pulp capping" in Hemijska Industrija, 73, no. 4 (2019):239-248,
https://doi.org/10.2298/HEMIND190504020P . .

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