Modified skulls but conservative brains? The palaeoneurology and endocranial anatomy of baryonychine dinosaurs (Theropoda: Spinosauridae)

Author:

Barker Chris Tijani12ORCID,Naish Darren3ORCID,Trend Jacob3,Michels Lysanne Veerle3,Witmer Lawrence4ORCID,Ridgley Ryan4,Rankin Katy5ORCID,Clarkin Claire E.3ORCID,Schneider Philipp67ORCID,Gostling Neil J.13ORCID

Affiliation:

1. Institute for Life Sciences, University of Southampton, University Road Southampton UK

2. Faculty of Engineering and Physical Sciences University of Southampton, University Road Southampton UK

3. School of Biological Sciences, Faculty of Environment and Life Sciences University of Southampton, University Road Southampton UK

4. Department of Biomedical Sciences, Heritage College of Osteopathic Medicine, Ohio Center for Ecology and Evolutionary Studies Ohio University Athens Ohio USA

5. μ‐VIS X‐ray Imaging Centre, Faculty of Engineering and Physical Sciences University of Southampton Southampton UK

6. Bioengineering Science Research Group, Faculty of Engineering and Physical Sciences University of Southampton Southampton UK

7. High‐Performance Vision Systems, Center for Vision, Automation and Control AIT Austrian Institute of Technology Vienna Austria

Abstract

AbstractThe digital reconstruction of neurocranial endocasts has elucidated the gross brain structure and potential ecological attributes of many fossil taxa, including Irritator, a spinosaurine spinosaurid from the “mid” Cretaceous (Aptian) of Brazil. With unexceptional hearing capabilities, this taxon was inferred to integrate rapid and controlled pitch‐down movements of the head that perhaps aided in the predation of small and agile prey such as fish. However, the neuroanatomy of baryonychine spinosaurids remains to be described, and potentially informs on the condition of early spinosaurids. Using micro‐computed tomographic scanning (μCT), we reconstruct the braincase endocasts of Baryonyx walkeri and Ceratosuchops inferodios from the Wealden Supergroup (Lower Cretaceous) of England. We show that the gross endocranial morphology is similar to other non‐maniraptoriform theropods, and corroborates previous observations of overall endocranial conservatism amongst more basal theropods. Several differences of unknown taxonomic utility are noted between the pair. Baryonychine neurosensory capabilities include low‐frequency hearing and unexceptional olfaction, whilst the differing morphology of the floccular lobe tentatively suggests less developed gaze stabilisation mechanisms relative to spinosaurines. Given the morphological similarities observed with other basal tetanurans, baryonychines likely possessed comparable behavioural sophistication, suggesting that the transition from terrestrial hypercarnivorous ancestors to semi‐aquatic “generalists” during the evolution of Spinosauridae did not require substantial modification of the brain and sensory systems.

Funder

University of Southampton

Engineering and Physical Sciences Research Council

Vetenskapsrådet

Publisher

Wiley

Subject

Cell Biology,Developmental Biology,Molecular Biology,Ecology, Evolution, Behavior and Systematics,Histology,Anatomy

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1. GESCHMACKSnerv & MusikGESCHMACK;MMW - Fortschritte der Medizin;2023-12

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