Comparative evaluation of sealing ability of two different biocompatible materials in repair of furcal perforation: An In vitro study
Purpose: The purpose of this study was to evaluate the sealing ability and microleakage of Biodentine and mineral trioxide aggregate (MTA) Repair HP as furcal perforation repair materials. Materials and Methods: Twenty permanent mandibular molars were divided for ten samples each in Group I – Biode...
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Wolters Kluwer Medknow Publications
2020-01-01
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Online Access: | http://www.dmrjournal.org/article.asp?issn=2348-1471;year=2020;volume=8;issue=2;spage=70;epage=74;aulast=Grover |
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doaj-db7737bdbc05417fa39653dc676b14972020-11-25T02:45:16ZengWolters Kluwer Medknow PublicationsDentistry and Medical Research2348-14712020-01-0182707410.4103/dmr.dmr_32_20Comparative evaluation of sealing ability of two different biocompatible materials in repair of furcal perforation: An In vitro studyRashu GroverGunmeen SadanaSunil GuptaTeena GuptaManjul MehraBuneet KaurPurpose: The purpose of this study was to evaluate the sealing ability and microleakage of Biodentine and mineral trioxide aggregate (MTA) Repair HP as furcal perforation repair materials. Materials and Methods: Twenty permanent mandibular molars were divided for ten samples each in Group I – Biodentine and Group II – MTA Repair HP. After access cavity preparation, artificial perforation was created and sealed with the repair material. Specimens were suspended in 2% methylene blue dye for 24 h and then split into longitudinal sections. After examining the depth of dye penetration under stereomicroscope, microleakage was calculated. Results: A higher mean microleakage was recorded in MTA Repair HP as compared to Biodentine. Conclusion: The study showed that Biodentine shows maximum sealing ability and least microleakage when compared with MTA Repair HP.http://www.dmrjournal.org/article.asp?issn=2348-1471;year=2020;volume=8;issue=2;spage=70;epage=74;aulast=Groverbiodentinefurcal perforation repairmandibular molarsmicroleakagemineral trioxide aggregate repair hp |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Rashu Grover Gunmeen Sadana Sunil Gupta Teena Gupta Manjul Mehra Buneet Kaur |
spellingShingle |
Rashu Grover Gunmeen Sadana Sunil Gupta Teena Gupta Manjul Mehra Buneet Kaur Comparative evaluation of sealing ability of two different biocompatible materials in repair of furcal perforation: An In vitro study Dentistry and Medical Research biodentine furcal perforation repair mandibular molars microleakage mineral trioxide aggregate repair hp |
author_facet |
Rashu Grover Gunmeen Sadana Sunil Gupta Teena Gupta Manjul Mehra Buneet Kaur |
author_sort |
Rashu Grover |
title |
Comparative evaluation of sealing ability of two different biocompatible materials in repair of furcal perforation: An In vitro study |
title_short |
Comparative evaluation of sealing ability of two different biocompatible materials in repair of furcal perforation: An In vitro study |
title_full |
Comparative evaluation of sealing ability of two different biocompatible materials in repair of furcal perforation: An In vitro study |
title_fullStr |
Comparative evaluation of sealing ability of two different biocompatible materials in repair of furcal perforation: An In vitro study |
title_full_unstemmed |
Comparative evaluation of sealing ability of two different biocompatible materials in repair of furcal perforation: An In vitro study |
title_sort |
comparative evaluation of sealing ability of two different biocompatible materials in repair of furcal perforation: an in vitro study |
publisher |
Wolters Kluwer Medknow Publications |
series |
Dentistry and Medical Research |
issn |
2348-1471 |
publishDate |
2020-01-01 |
description |
Purpose: The purpose of this study was to evaluate the sealing ability and microleakage of Biodentine and mineral trioxide aggregate (MTA) Repair HP as furcal perforation repair materials. Materials and Methods: Twenty permanent mandibular molars were divided for ten samples each in Group I – Biodentine and Group II – MTA Repair HP. After access cavity preparation, artificial perforation was created and sealed with the repair material. Specimens were suspended in 2% methylene blue dye for 24 h and then split into longitudinal sections. After examining the depth of dye penetration under stereomicroscope, microleakage was calculated. Results: A higher mean microleakage was recorded in MTA Repair HP as compared to Biodentine. Conclusion: The study showed that Biodentine shows maximum sealing ability and least microleakage when compared with MTA Repair HP. |
topic |
biodentine furcal perforation repair mandibular molars microleakage mineral trioxide aggregate repair hp |
url |
http://www.dmrjournal.org/article.asp?issn=2348-1471;year=2020;volume=8;issue=2;spage=70;epage=74;aulast=Grover |
work_keys_str_mv |
AT rashugrover comparativeevaluationofsealingabilityoftwodifferentbiocompatiblematerialsinrepairoffurcalperforationaninvitrostudy AT gunmeensadana comparativeevaluationofsealingabilityoftwodifferentbiocompatiblematerialsinrepairoffurcalperforationaninvitrostudy AT sunilgupta comparativeevaluationofsealingabilityoftwodifferentbiocompatiblematerialsinrepairoffurcalperforationaninvitrostudy AT teenagupta comparativeevaluationofsealingabilityoftwodifferentbiocompatiblematerialsinrepairoffurcalperforationaninvitrostudy AT manjulmehra comparativeevaluationofsealingabilityoftwodifferentbiocompatiblematerialsinrepairoffurcalperforationaninvitrostudy AT buneetkaur comparativeevaluationofsealingabilityoftwodifferentbiocompatiblematerialsinrepairoffurcalperforationaninvitrostudy |
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