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Indirect evaluation of pit and fissure sealants : a 3D-based method validation

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Indirect evaluation of pit and fissure sealants : a 3D-based method validation

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dc.contributor.author Moreira, Kelly es
dc.contributor.author Kantovitz, Kamila R. es
dc.contributor.author Bueno, Tamires es
dc.contributor.author Agulhari, Maria-Angélica es
dc.contributor.author Rizzante, Fabio A.P. es
dc.contributor.author Aguiar, Juliana es
dc.contributor.author Pascon, Fernanda es
dc.contributor.author Arias, Vanessa es
dc.contributor.author Borges, Ana-Flávia es
dc.contributor.author Rontani, Regina-Maria es
dc.date.accessioned 2021-04-19T10:10:17Z
dc.date.available 2021-04-19T10:10:17Z
dc.date.issued 2020 es
dc.identifier.citation Moreira, Kelly ; Kantovitz, Kamila R. ; Bueno, Tamires ; Agulhari, Maria-Angélica ; Rizzante, Fabio A.P. ; Aguiar, Juliana ; Pascon, Fernanda ; Arias, Vanessa ; Borges, Ana-Flávia ; Rontani, Regina-Maria. Indirect evaluation of pit and fissure sealants : a 3D-based method validation. En: Journal of Clinical and Experimental Dentistry, 12 9 2020: 852-856 es
dc.identifier.uri https://hdl.handle.net/10550/78768
dc.description.abstract The aim of the present study was to compare indirect methods to assess the clinical performance of pit and fissure sealants and validate the use of 3D scanners. Sample consisted of 58 plaster models of upper and lower first permanent molars, sealed with resin sealants, as well as photographs obtained during the 18-month follow-up. Pre-established criteria were applied to categorize the sealant presence/absence and marginal integrity. Two calibrated examiners performed the evaluations, independently, using Scanning Electron Microscopy (SEM; gold-standard), Photography, 3D (CEREC In Lab) and Stereomicroscope analysis. The intra-examiner Spearman correlation was 94% e 97%, respectively, and the inter-examiner was 96%. Data was submitted to Kappa test, Spearman correlation and Receiver Operating Characteristic Curve (ROC). 3D and SEM presented good concordance; Stereomicroscope showed regular concordance with SEM and 3D (p<0.001). There was no concordance among Photography and the other methods (p>0.05). SEM had a significant positive correlation with 3D and Stereomicroscope (r=0.76 and 0.71, respectively; p<0.01). There was significant positive correlation (r=0.65) between 3D and Stereomicroscope (p<0.01). The ROC estimated curve areas for Stereomicroscope and 3D were 0.90 (IC:0.81-0.99) and 1.0 (IC:1.0-1.0), respectively (p<0.001). Photography presented lower sensitivity and specificity (area=0.59). 3D method showed the best performance when compared to gold standard, exhibiting high sensitivity and specificity, therefore, it was validated as a reliable method to evaluate pit and fissure sealants. es
dc.title Indirect evaluation of pit and fissure sealants : a 3D-based method validation es
dc.type journal article es_ES
dc.subject.unesco UNESCO::CIENCIAS MÉDICAS es
dc.identifier.doi 10.4317/jced.56688 es
dc.type.hasVersion VoR es_ES

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