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Data from: Does postcranial palaeoneurology provide insight into pterosaur behaviour and lifestyle? New data from the azhdarchoid Vectidraco
负责人:
关键词:
computed tomography;Pterosauria;Azhdarchoidea;Vectidraco daisymorrisae;nerve foramina;Ornithocheiridae;sacrum;pterosaurs;Cretaceous;palaeoneurology;Coloborhynchus
DOI:
doi:10.5061/dryad.rq4b2n6
摘要:
The postcranial palaeoneurology of fossil reptiles is understudied, and those studies that exist focus predominantly on crocodyliforms and dinosaurs
Data from: Virtual reconstruction of endocast anatomy in early ray-finned fishes (Osteichthyes: Actinopterygii)
负责人:
关键词:
palaeoneurology endocasts virtual palaeontology palaeontology
DOI:
doi:10.5061/dryad.6j13r
摘要:
anatomical structures that have long been the focus of paleontological investigation. We applied computed tomographics (CTs) in order to generate endocast models
Data from: A new method for reconstructing brain morphology: applying the brain-neurocranial spatial relationship in an extant lungfish to a fossil
负责人:
关键词:
Brain;lungfish;Devonian;Rhinodipterus;Neoceratodus;endocast;palaeoneurology
DOI:
doi:10.5061/dryad.820j2
摘要:
. Palaeoneurological investigations into the group show that unlike numerous other fishes—but more similar to those in tetrapods—lungfish appear to have had a close fit
Data from: The cranial endocast of Dipnorhynchus sussmilchi (Sarcopterygii: Dipnoi) and the interrelationships of stem-group lungfishes
负责人:
关键词:
endocast;Devonian;Dipnorhynchus;braincase;Dipnoi;phylogeny;skull;microtomography;palaeoneurology
DOI:
doi:10.5061/dryad.22dr1
摘要:
within the dipnoan stem group, in agreement with recent analyses. Our analysis demonstrates the value of endocast characters for inferring phylogenetic relationships.
Data from: Multiple regression modelling for estimating endocranial volume in extinct Mammalia
负责人:
关键词:
palaeoneurology;Mammalia;Multiple linear regression;Mammals;Brain size;endocast
DOI:
doi:10.5061/dryad.38v59
摘要:
for estimating brain size from external skull measurements. We also examined non- mammalian synapsids to assess the phylogenetic limits of our model's application

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