Morphological aspects and physical properties of enamel and dentine of Sus domesticus: A tooth model in laboratory research

This study aims to describe and analyze morphological and physical properties of deciduous teeth of Sus domesticus. Ultrastructural analysis, mineral composition and microhardness of enamel and dentine tissues were performed on 10 skulls of S. domesticus. External anatomic characteristics and the in...

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Veröffentlicht in:Annals of anatomy 2015-11, Vol.202, p.71-77
Hauptverfasser: Fagundes, Nathalia Carolina Fernandes, Cardoso, Miquéias André Gomes, Miranda, Mayara Sabrina Luz, Silva, Raira de Brito, Teixeira, Francisco Bruno, Nogueira, Bárbara Catarina Lima, Nogueira, Brenna Magdalena Lima, de Melo, Sara Elisama Silva, da Costa, Natacha Malu Miranda, Lima, Rafael Rodrigues
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Sprache:eng
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Zusammenfassung:This study aims to describe and analyze morphological and physical properties of deciduous teeth of Sus domesticus. Ultrastructural analysis, mineral composition and microhardness of enamel and dentine tissues were performed on 10 skulls of S. domesticus. External anatomic characteristics and the internal anatomy of the teeth were also described. Data regarding microhardness and ultrastructural analysis were subjected to statistical tests. For ultrastructural analysis, we used the analysis of variance (ANOVA) with Tukey's post hoc (p≤0.05) test. In the analysis of microhardness, the difference between the enamel and dentine tissues was analyzed by a Student's t test. Values were expressed as mean with standard error. The results of ultrastructural analysis showed the presence of an enamel prism pattern. A dentinal tubule pattern was also observed, with a larger diameter in the pulp chamber and the cervical third, in comparison to middle and apical thirds. We observed an average microhardness of 259.2kgf/mm2 for enamel and 55.17kgf/mm2 for dentine. In porcine enamel and dentine, the chemical elements Ca and P showed the highest concentration. The analysis of internal anatomy revealed the presence of a simple root canal system and the occurrence of main canals in the roots. The observed features are compatible with the functional demand of these animals, following a pattern very similar to that seen in other groups of mammals, which can encourage the development of research using dental elements from the pig as a substitute for human teeth in laboratory research.
ISSN:0940-9602
1618-0402
DOI:10.1016/j.aanat.2015.08.007