Neutron scanning reveals unexpected complexity in the enamel thickness of an herbivorous Jurassic reptile.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 29899156.
- Also identified by DOI 10.1098/rsif.2018.0039 and PMC identifier 6030635.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Eilenodontines are one of the oldest radiation of herbivorous lepidosaurs (snakes, lizards and tuatara) characterized by batteries of wide teeth with thick enamel that bear mammal-like wear facets. Unlike most reptiles, eilenodontines have limited tooth replacement, making dental longevity particularly important to them. We use both X-ray and neutron computed tomography to examine a fossil tooth from the eilenodontine <i>Eilenodon</i> (Late Jurassic, USA). Of the two approaches, neutron tomography was more successful and facilitated measurements of enamel thickness and distribution. We find the enamel thickness to be regionally variable, thin near the cusp tip (0.10 mm) but thicker around the base (0.15-0.30 mm) and notably greater than that of other rhynchocephalians such as the extant <i>Sphenodon</i> (0.08-0.14 mm). The thick enamel in <i>Eilenodon</i> would permit greater loading, extend tooth lifespan and facilitate the establishment of wear facets that have sharp edges for orally processing plant material such as horsetails (<i>Equisetum</i>). The shape of the enamel dentine junction indicates that tooth development in <i>Eilenodon</i> and <i>Sphenodon</i> involved similar folding of the epithelium but different ameloblast activity.
Medical subject headings
- Dental Enamel
- Dinosaurs
- Fossils
- Herbivory
- Neutron Diffraction
- Tomography, X-Ray Computed