Management of Root Perforations Using MTA with or without Er:YAG Laser Irradiation: An In Vitro Study
Author(s) -
M Tielemans,
I. Saloukas,
Daniel Heysselaer,
Ph. Compere,
Catherine Behets,
Samir Nammour
Publication year - 2012
Publication title -
international journal of dentistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.61
H-Index - 33
eISSN - 1687-8736
pISSN - 1687-8728
DOI - 10.1155/2012/628375
Subject(s) - mineral trioxide aggregate , er:yag laser , irradiation , materials science , dentistry , laser , penetration (warfare) , perforation , methylene blue , root canal , composite material , chemistry , medicine , optics , biochemistry , physics , nuclear physics , operations research , photocatalysis , punching , engineering , catalysis
The aim of this in vitro study is to compare the microleakage of a root perforation sealed with MTA (mineral trioxide aggregate) (group M) to that sealed with MTA following Er:YAG laser irradiation (group ML). Forty-two recently extracted human monoroot teeth were used. Two cavities were prepared on each root surface. Randomly, on each root, the exposed dentine of one cavity was irradiated prior to MTA filling using an Er:YAG laser with the following settings: 200 mJ/pulses under an air water spray, 10 Hz, pulse duration of 50 μ sec, and 0.7 mm beam diameter. All cavities were then sealed with MTA. submitted to thermocycling and immersed in 2% methylene blue dye solution for 12 h. The penetration of methylene blue in the microleakage of cavity was observed and recorded. The mean value dye penetration in cavities sealed with MTA following Er:YAG laser irradiation (23.91 ± 14.63%) was lower than that of unlased cavities sealed only with MTA (25.17 ± 17.53%). No significant difference was noted. The use of an Er:YAG laser beam for dentinal conditioning prior to MTA filling of perforated roots did not decrease significantly the microleakage of MTA sealing when compared to the conventional use of MTA filling.
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