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The braincase and inner ear of ‘Metriorhynchus’ cf. ‘M.’ brachyrhynchus–implications for aquatic sensory adaptations in crocodylomorphs

The braincase and inner ear of ‘Metriorhynchus’ cf. ‘M.’ brachyrhynchus–implications for aquatic sensory adaptations in crocodylomorphs
The braincase and inner ear of ‘Metriorhynchus’ cf. ‘M.’ brachyrhynchus–implications for aquatic sensory adaptations in crocodylomorphs

During their long evolutionary history crocodylomorphs achieved a great diversity of body sizes, ecomorphotypes and inferred feeding ecologies. One unique group of crocodylomorphs are the thalattosuchians, which lived during the Jurassic and Cretaceous (ca. 191–125 Ma). They transitioned from shallow marine species, like teleosauroids, into fully pelagic forms with paddle shaped limbs and a vertically orientated tail fluke, the metriorhynchids. The osteological adaptations that allowed metriorhynchids to live in the water are generally well understood, but less is known about their neurosensory and endocranial systems, such as the brain, inner ears, sinuses and cranial nerves and how they relate to their aquatic lifestyle. Based on micro-computed tomography (μCT) data and three-dimensional models, we here describe the braincase and endocranial anatomy of a fully marine metriorhynchid, ‘Metriorhynchus’ cf. ‘M.’ brachyrhynchus (NHMUK PV OR 32617). We found several neuroanatomical features that likely helped this species function in its marine environment. These include a unique flexure in the brain endocast not seen in other thalattosuchians. Other features that have previously been seen in thalattosuchians include enlarged cerebral hemispheres, a hypertrophied venous sinus system, enlarged internal carotid arteries and foramina, and closed/absent lateral pharyngotympanic foramina. The specimen also possesses a pelagic metriorhynchid bony labyrinth morphology, with a compact and dorsoventrally short shape, thick semicircular canals, an enlarged vestibule and potentially a short cochlear duct. A review of character distribution confirms that some of these features evolved at the base of Thalattosuchia in semiaquatic species, long before metriorhynchids became pelagic, suggesting that endocranial anatomy helped allow metriorhynchoids colonize the ocean realm.

0272-4634
Schwab, Julia A.
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Young, Mark T.
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Herrera, Yanina
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Witmer, Lawrence M.
cb24e089-8294-4cd2-b2ee-5a1c28767af3
Walsh, Stig A.
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Katsamenis, Orestis L.
8553e7c3-d860-4b7a-a883-abf6c0c4b438
Brusatte, Stephen L.
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Schwab, Julia A.
b083038e-d3e7-4b41-9e3e-6f3663dd0b01
Young, Mark T.
d9880973-1dd1-4b1c-81a8-7494170dbac2
Herrera, Yanina
1678b658-0258-423d-96df-26b1a9dc2ecf
Witmer, Lawrence M.
cb24e089-8294-4cd2-b2ee-5a1c28767af3
Walsh, Stig A.
2824236c-393c-4690-8e78-24edf437655a
Katsamenis, Orestis L.
8553e7c3-d860-4b7a-a883-abf6c0c4b438
Brusatte, Stephen L.
80497252-b249-4d92-a0a0-9975734d97af

Schwab, Julia A., Young, Mark T., Herrera, Yanina, Witmer, Lawrence M., Walsh, Stig A., Katsamenis, Orestis L. and Brusatte, Stephen L. (2021) The braincase and inner ear of ‘Metriorhynchus’ cf. ‘M.’ brachyrhynchus–implications for aquatic sensory adaptations in crocodylomorphs. Journal of Vertebrate Paleontology, 41 (1), [e1912062]. (doi:10.1080/02724634.2021.1912062).

Record type: Article

Abstract

During their long evolutionary history crocodylomorphs achieved a great diversity of body sizes, ecomorphotypes and inferred feeding ecologies. One unique group of crocodylomorphs are the thalattosuchians, which lived during the Jurassic and Cretaceous (ca. 191–125 Ma). They transitioned from shallow marine species, like teleosauroids, into fully pelagic forms with paddle shaped limbs and a vertically orientated tail fluke, the metriorhynchids. The osteological adaptations that allowed metriorhynchids to live in the water are generally well understood, but less is known about their neurosensory and endocranial systems, such as the brain, inner ears, sinuses and cranial nerves and how they relate to their aquatic lifestyle. Based on micro-computed tomography (μCT) data and three-dimensional models, we here describe the braincase and endocranial anatomy of a fully marine metriorhynchid, ‘Metriorhynchus’ cf. ‘M.’ brachyrhynchus (NHMUK PV OR 32617). We found several neuroanatomical features that likely helped this species function in its marine environment. These include a unique flexure in the brain endocast not seen in other thalattosuchians. Other features that have previously been seen in thalattosuchians include enlarged cerebral hemispheres, a hypertrophied venous sinus system, enlarged internal carotid arteries and foramina, and closed/absent lateral pharyngotympanic foramina. The specimen also possesses a pelagic metriorhynchid bony labyrinth morphology, with a compact and dorsoventrally short shape, thick semicircular canals, an enlarged vestibule and potentially a short cochlear duct. A review of character distribution confirms that some of these features evolved at the base of Thalattosuchia in semiaquatic species, long before metriorhynchids became pelagic, suggesting that endocranial anatomy helped allow metriorhynchoids colonize the ocean realm.

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The braincase and inner ear of Metriorhynchus cf M brachyrhynchus implications for aquatic sensory adaptations in crocodylomorphs - Version of Record
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Accepted/In Press date: 22 January 2021
e-pub ahead of print date: 8 June 2021

Identifiers

Local EPrints ID: 449985
URI: http://eprints.soton.ac.uk/id/eprint/449985
ISSN: 0272-4634
PURE UUID: 87e22e38-15d8-4b02-a47f-aeb8820f1a28
ORCID for Orestis L. Katsamenis: ORCID iD orcid.org/0000-0003-4367-4147

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Date deposited: 01 Jul 2021 16:34
Last modified: 18 Mar 2024 03:18

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Contributors

Author: Julia A. Schwab
Author: Mark T. Young
Author: Yanina Herrera
Author: Lawrence M. Witmer
Author: Stig A. Walsh
Author: Stephen L. Brusatte

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