Assessing the adductor musculature and jaw mechanics of Proterochampsa nodosa (Archosauriformes: Proterochampsidae) through finite element analysis

Author:

de Simão‐Oliveira Daniel12ORCID,dos Santos Tiago3ORCID,Pinheiro Felipe Lima4ORCID,Pretto Flávio Augusto12ORCID

Affiliation:

1. Programa de Pós‐Graduação em Biodiversidade Animal Universidade Federal de Santa Maria (UFSM) Santa Maria Rio Grande do Sul Brazil

2. Centro de Apoio à Pesquisa Paleontológica da Quarta Colônia (CAPPA) Universidade Federal de Santa Maria (UFSM) São João do Polêsine Rio Grande do Sul Brazil

3. Departamento de Engenharia Mecânica Universidade Federal de Santa Maria Santa Maria Rio Grande do Sul Brazil

4. Laboratório de Paleobiologia Universidade Federal do Pampa São Gabriel Rio Grande do Sul Brazil

Abstract

AbstractProterochampsids are a group of South American nonarchosaurian archosauromorphs whose general morphology has been historically likened to that of the extant Crocodylia, which purportedly exhibited similar habits by convergence. Taxa from the genus Proterochampsa, for example, show platyrostral skulls with dorsally faced orbits and external nares and elongated snouts that might indicate a feeding habit similar to that of crocodilians. Nonetheless, some aspects of their craniomandibular anatomy are distinct. Proterochampsa has comparatively larger skull temporal fenestrae, and a unique morphology of the mandibular adductor chamber, with a remarkably large surangular shelf and a fainter retroarticular region in the mandible. In light of this, we conducted biomechanical tests on a 3‐dimensional model of Proterochampsa nodosa including the first Finite Element Analysis for proterochampsians and compared it with models of the extant crocodylians Tomistoma schlegelii and Alligator mississippiensis. Our analyses suggested that, despite the differences in adductor chamber, Proterochampsa was able to perform bite forces comparable to those modeled for Alligator and significantly higher than Tomistoma. However, the morphology of the surangular shelf and the adductor chamber of Proterochampsa renders it more prone to accumulate stresses resulting from muscle contraction, when compared with both analogs. The elongated lower jaw of Proterochampsa, like that of Tomistoma, is more susceptible to bending, when compared with Alligator. As a result, we suggest that Proterochampsa might employ anteriorly directed bites only when handling small and soft‐bodied prey. In addition, Proterochampsa exemplifies the diversity of arrangements that the adductor musculature adopted in different diverging archosauromorph groups.

Funder

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Fundação de Amparo à Pesquisa do Estado do Rio Grande do Sul

Publisher

Wiley

Reference66 articles.

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