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In Vitro Analysis of Enamel Patterns Across Three Species Using Stereomicroscopy

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Journal Cureus
Date 2024 Jun 3
PMID 38826978
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Abstract

Background Dental enamel, the outermost layer of the tooth, stands as a unique and remarkable tissue that plays a crucial role in safeguarding teeth against various external factors. The examination and analysis of enamel rod end patterns on tooth surfaces, referred to as ameloglyphics, offer a promising avenue for dental identification and forensic investigations in forensic medicine, thereby enhancing the precision and reliability of forensic analyses. This paper aims to evaluate and compare the ameloglyphics of different species under a stereomicroscope. The species examined in this study include the beaver (genus ), fox (genus ), and human (). Methods Teeth samples from each species (n = 3) were gathered from the tooth repository and examined under a stereomicroscope at various magnifications, both with and without graphite staining. Photographs were captured, and the enamel patterns were meticulously evaluated. Through the utilization of plot profiles, the enamel patterns of the different species were compared, and any discernible differences between them were carefully noted. Results The plot profiles of the three species were analyzed, revealing distinct characteristics. Specifically, it was observed that the plots of the genus teeth and teeth exhibited dispersed arrangements, whereas the plot profile of the genus displayed a closely arranged pattern. Conclusions Within the confines of the current investigation, it can be inferred that every mammal exhibits a distinct and exclusive arrangement of enamel rods. Hence, the task of identifying a deceased individual through dental imprints may pose difficulties if the structural characteristics are not thoroughly comprehended.

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References
1.
Shapiro A, Venkataraman V, Nguyen N, Fashing P . Dietary ecology of fossil Theropithecus: Inferences from dental microwear textures of extant geladas from ecologically diverse sites. J Hum Evol. 2016; 99:1-9. DOI: 10.1016/j.jhevol.2016.05.010. View

2.
Smith B . Changes in perikymata and their significance to a postmortem dental identification. J Forensic Sci. 1991; 36(1):166-78. View

3.
Szuma E, Germonpre M . Were ancient foxes far more carnivorous than recent ones?-Carnassial morphological evidence. PLoS One. 2020; 15(1):e0227001. PMC: 6953794. DOI: 10.1371/journal.pone.0227001. View

4.
Narayan V, Varsha V, Girish H, Murgod S . Stereomicroscopic study on unsectioned extracted teeth. J Forensic Dent Sci. 2018; 9(3):157-164. PMC: 5887640. DOI: 10.4103/jfo.jfds_43_16. View

5.
Naziya J, Sunil S, Jayanthi P, Rathy R, Harish R . Analysis of enamel rod end pattern for personal identification. J Oral Maxillofac Pathol. 2019; 23(1):165. PMC: 6503785. DOI: 10.4103/jomfp.JOMFP_208_18. View