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Mandibular musculature constrains brain–endocast disparity between sarcopterygians
The transition from water to land by the earliest tetrapods in the Devonian Period is seen as one of the greatest steps in evolution. However, little is understood concerning changes in brain morphology over this transition.
Jason D Pardo +2 more
exaly +3 more sources
A new method for reconstructing brain morphology: applying the brain-neurocranial spatial relationship in an extant lungfish to a fossil endocast [PDF]
Lungfish first appeared in the geological record over 410 million years ago and are the closest living group of fish to the tetrapods. Palaeoneurological investigations into the group show that unlike numerous other fishes—but more similar to those in ...
Robin Strand +2 more
exaly +2 more sources
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Cranial endocast of the stem lagomorphMegalagusand brain structure of basal Euarchontoglires
Proceedings of the Royal Society B: Biological Sciences, 2020Sergi López-Torres +2 more
exaly
Endocast, brain, and bones: Correspondences and spatial relationships in squamates
Anatomical Record, 2023Rémi Allemand
exaly
A natural endocast of an early Miocene odontocete and its implications in cetacean brain evolution
Journal of Comparative Neurology, 2021Michelangelo Bisconti
exaly
Brief communication: New reconstruction of the Taung endocast
American Journal of Physical Anthropology, 2007Dean Falk
exaly

