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February 14, 2026Brain Behavior and Evolution0 citationsOpen Access

Pre- and postnatal ontogeny of brain size in beluga and bowhead whales

JTJ. G. M. ThewissenKMKatheryn R. MarsDWDavid A. Waugh

Key Points

  • This research aims to understand how brain size changes occur in bowhead and beluga whales during their growth stages.
  • Collected field specimens of bowhead and beluga whales.
  • Measured brain size and endocranial volumes using direct measurements or CT scanning.
  • Estimated age using baleen length for bowheads and growth layers in teeth for belugas.
  • Applied Gompertz growth models to analyze brain size data.
  • Both whale species reach near full brain size by the end of weaning.
  • Bowhead whales exhibit faster brain growth compared to belugas and humans.
  • Encephalization quotients decrease with age due to ongoing body growth post brain maturation.
  • Brain size in bowheads is significantly smaller than their cranial cavity, unlike belugas.

Abstract

Introduction: Ontogenetic brain growth in cetaceans is essential for understanding their development and evolution. This study investigates brain size changes relative to body growth in bowhead (Balaena mysticetus) and beluga (Delphinapterus leucas) whales in the framework of age estimates of pre- and postnatal specimens. Methods: We collected specimens in the field, determined brain size and endocranial volumes, as well as size of endocranial adnexa, either by direct measurement or by CT. We estimated age using baleen length (bowhead), growth layers in teeth (belugas), or fetal stages. We fitted Gompertz growth models to our data. Results: Our findings show that both bowhead and beluga whales reach nearly their full brain size by the end of weaning, unlike dolphins and humans, whose brains continue growing after weaning. Bowhead brains grow faster than those of belugas, and much faster than those of humans, and their rete mirabile occupies a much larger portion of the cranial cavity than in belugas. Encephalization quotients decline with age due to continued body growth after brain maturation. Conclusion: Brain growth in these cetacean species plateaus early, challenging the assumption that cetacean brains grow throughout life. In bowhead, the brain is significantly smaller than the cranial cavity, and this is not the case in beluga. If this observation can be generalized to all mysticetes and odontocetes, it implies that no single equation can capture the proportional volumes of brain and cranial cavity across the entire cetacean clade.

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Cite This Study

Thewissen et al. (2026) studied this question.

synapsesocial.com/papers/699011712ccff479cfe581achttps://doi.org/10.1159/000550974
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Age estimation for young bowhead whales (Balaena mysticetus) using annual baleen growth increments2008 · 72 citations
  2. 2Relation of Gestation Time to Brain Weight for Placental Mammals: Implications for the Theory of Vertebrate Growth1974 · 449 citations
  3. 3Observations on the Vertebral Column of the Domestic Animals1947 · 19 citations
  4. 4Estimation of Fetal Growth and Gestation in Bowhead Whales2001 · 45 citations
  5. 5Intervertebral and Epiphyseal Fusion in the Postnatal Ontogeny of Cetaceans and Terrestrial Mammals2014 · 53 citations