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RESEARCH PRODUCT

MTA apical barrier: In vitro study of the use of ultrasonic vibration

Nicolás Collado-castellanosPedro Micó-muñozAlberto Manzano-saizBegona Escribano-escriváSusana Muwaquet-rodríguezTeresa Giner-lluesma

subject

0301 basic medicineMineral trioxide aggregateMateriales dentalesDentistryOdontologíaUltrasonidos en medicinaOperative Dentistry and Endodontics03 medical and health sciences0302 clinical medicinestomatognathic systemUltrasonic vibrationIn vitro studyTecnología médicaGeneral DentistryPulp necrosisPermanent toothChemistrybusiness.industryResearch030206 dentistry:CIENCIAS MÉDICAS [UNESCO]Ciencias de la saludAlternative treatmentstomatognathic diseases030104 developmental biologyUNESCO::CIENCIAS MÉDICASApexificationbusiness

description

Background: The apexification is the first alternative treatment on a permanent tooth when, after a tooth trauma and in the presence of immature apex trauma, pulp necrosis occurs. Many studies have demonstrated the efficacy of mineral trioxide aggregate (MTA) as apical sealing material of choice in these cases, but has a degree of filtration as all other materials. The objective of this study was to analyze the seal ability of MTA on the duct walls in immature teeth unirradicular apexes, using indirect vibration. Material and Methods: The study was conducted on 45 teeth divided into 3 groups: Group A or control group in which no vibration for placing the MTA was used, Group B and C or groups where indirect vibration analysis was used. All samples were immersed in methylene blue to assess filtration. After performing longitudinal cuts millimetric measuring were made of the degree of filtration, divided into 3 degrees (2mm each grade filtration). Results: Results obtained confirm our hypothesis, obtaining lesser degree of filtration those groups in which indirect vibration (Groups B and C) was performed. It was shown that the degree of filtration is closely linked to the degree of adaptation. Conclusions: MTA vibration offers better results in its adaptation to the canal walls, significantly reducing the degree of filtration. Sin financiación 0.49 SJR (2016) Q2, 63/141 Dentistry (miscellaneous) UEV

https://doi.org/10.4317/jced.53085