Authors
Boch, M., Avelino-de-Souza, K., Binder, S., Patzke, N., Benn, R. A., Mynssen, H., Tha, K. K., Taverna Chaim, K., Wicinski, B., Tang, C. Y., Manger, P. R., Rouse, A. A., Hof, P. R., Cook, P. F., Mars, R. B.
Abstract
The transition of pinnipeds from terrestrial ancestors into marine environments provides a unique opportunity to examine how cortical organisation has changed with adaptation to life in water. Here, we examined neocortical sulcal anatomy in nine species representing all three extant pinniped families using cortical surfaces reconstructed from post-mortem MRI. Building on a standardised framework previously established for land-dwelling (fissiped) carnivorans, we developed identification criteria for major pinniped sulci and compared their configurations with those observed across fissipeds. Major sulci were broadly conserved, but pinnipeds exhibited characteristic modifications, including a complex, highly branched pseudosylvian configuration and distinct frontoparietal sulcal patterns, with further family-level variation in both territories. This observed variation in sulcal patterns may reflect pronounced differences in locomotor, tactile, and vocal specialisations, generating hypotheses about how cortical organisation may vary with adaptation to marine environments. Together, these findings establish a common anatomical framework across Carnivora for investigating how cortical organisation diversified in relation to behaviour and ecology.
Preprint server:
bioRxiv
The authors list and abstract were imported from bioRxiv on 20 Sep 2026.
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