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Synapse
March 14, 2026Science1 citations

Seal and sea lion brains have evolved to support volitional control of vocal behavior and learning

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PCPeter F. CookARAndrew A. RouseUniversity of California, Santa CruzESEva K. SawyerVanderbilt University

Key Points

  • To investigate neural adaptations for volitional vocal control in seal and sea lion brains.
  • Utilized histology and ex vivo diffusion magnetic resonance imaging
  • Conducted tractography to assess neural pathways
  • Examined connectivity patterns in harbor seals' brains
  • Identified vocal motor cortex connections to phonatory brainstem nuclei in otariids and phocid seals
  • Harbor seals exhibited increased connectivity in the vocal premotor cortex
  • Revealed auditory-premotor pathways related to call learning in phocid seals

Abstract

Seals and sea lions have highly developed volitional breathing control, to which the phocid seals add vocal production learning, including mimicry. In this work, using histology and ex vivo diffusion magnetic resonance imaging tractography, we provide evidence for a phylogenetic spectrum of accumulative neural adaptations supporting aspects of volitional vocal control across pinnipeds. Otariids and phocid seals, but not coyotes, have a direct connection between the vocal motor cortex and phonatory brainstem nuclei. Harbor seals showed hypertrophic connectivity between the anterior ventrolateral thalamus and the vocal premotor cortex—part of a forebrain circuit related to vocal learning in birds and mimicry in humans and parrots. We demonstrate that phocid seals have auditory-premotor pathways potentially related to developmental call learning.

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Cite This Study

Cook et al. (2026) studied this question.

synapsesocial.com/papers/69b4ba1818185d8a39802945https://doi.org/10.1126/science.adx9367
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