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Chemical and morphological changes in human dentin after Er:YAGlaser irradiation: EDS and SEM analysis
Authors:Belinda Contreras‐Arriaga  Laura Emma Rodríguez‐Vilchis  Rosalía Contreras‐Bulnes  Oscar Fernando Olea‐Mejìa  Rogelio José Scougall‐Vilchis  Claudia Centeno‐Pedraza
Affiliation:1. Facultad de Odontología, Centro de Investigación y Estudios Avanzados en Odontología (CIEAO), Universidad Autónoma del Estado de México, Jesús Carranza Esq. Paseo Tollocan, Col. Universidad, Toluca, Estado de México, México;2. Universidad Autónoma Del Estado de México‐Universidad Nacional Autónoma de México, Centro Conjunto de Investigación en Química Sustentable (CCIQS), Toluca, Estado de México, México
Abstract:Sixty samples of human dentin were divided into six groups (n = 10) and were irradiated with Er:YAG laser at 100 mJ–19.9 J/cm2, 150 mJ–29.8 J/cm2, 100 mJ–35.3 J/cm2, 150 mJ–53.0 J/cm2, 200 mJ–70.7 J/cm2, and 250 mJ–88.5 J/cm2, respectively, at 7 Hz under a water spray. The atomic percentages of carbon, oxygen, magnesium, calcium, and phosphorus and the Ca‐to‐P molar ratio on the dentin were determined by energy dispersive X‐ray spectroscopy. The morphological changes were observed using scanning electron microscopy. A paired t‐test was used in statistical analysis before and after irradiation, and a one‐way ANOVA was performed (P ≤ 0.05). The atomic percent of C tended to decrease in all of the groups after irradiation with statistically significant differences, O and Mg increased with significant differences in all of the groups, and the Ca‐to‐P molar ratio increased in groups IV, V, and VI, with statistically significant differences between groups II and VI. All the irradiated samples showed morphological changes. Major changes in the chemical composition of dentin were observed in trace elements. A significant increase in the Ca‐to‐P ratio was observed in the higher energy density groups. Morphological changes included loss of smear layer with exposed dentinal tubules. The changes produced by the different energy densities employed could have clinical implications, additional studies are required to clarify them. Microsc. Res. Tech. 78:1019–1025, 2015. © 2015 Wiley Periodicals, Inc.
Keywords:chemical  morphological  dentin  Er:YAG laser  SEM  EDS
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