Functional cranial analysis of large animalivorous bats (Microchiroptera)

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Autore principale: Freeman, Patricia W.
Natura: Recurso digital
Pubblicazione: Zenodo 1984
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author Freeman, Patricia W.
author_facet Freeman, Patricia W.
contents (Uploaded by Plazi for the Bat Literature Project) Large animalivorous bats include carnivorous, piscivorous and insectivorous microchiropterans. Skull proportions and tooth morphology are examined and interpreted functionally. Four wide- faced bats from four families are convergent in having wide skulls, large masseter muscle volumes and stout jaws, indicating a powerful bite. Three of the four also have long canine teeth relative to their maxillary toothrows. Carnivorous bats have more elongate skulls, larger brain volumes and larger pinnae. The wide-faced bats are all oral emitters and have heads positively tilted relative to the basicranial axis. The carnivorous species are nasalemitting bats and have negatively tilted heads. The orientation of the head relative to the basicranial axis affects several characters of the skull and jaws and is not correlated with size. The speculation that the type of echolocation may be more of a determinant of evolutionary change than the feeding mechanism is addressed. Wide-faced bats are thought to be capable of eating hard prey items (durophagus) and are probably non- discriminating, aurally less sophisticated insect generalists while the carnivorous and non-durophagus insectivorous bats may be more discriminating and aurally more sophisticated in what they eat.
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_13504103
institution Zenodo
language
publishDate 1984
publisher Zenodo
record_format zenodo
spellingShingle Functional cranial analysis of large animalivorous bats (Microchiroptera)
Freeman, Patricia W.
Biodiversity
Mammalia
Chiroptera
Chordata
Animalia
bats
bat
(Uploaded by Plazi for the Bat Literature Project) Large animalivorous bats include carnivorous, piscivorous and insectivorous microchiropterans. Skull proportions and tooth morphology are examined and interpreted functionally. Four wide- faced bats from four families are convergent in having wide skulls, large masseter muscle volumes and stout jaws, indicating a powerful bite. Three of the four also have long canine teeth relative to their maxillary toothrows. Carnivorous bats have more elongate skulls, larger brain volumes and larger pinnae. The wide-faced bats are all oral emitters and have heads positively tilted relative to the basicranial axis. The carnivorous species are nasalemitting bats and have negatively tilted heads. The orientation of the head relative to the basicranial axis affects several characters of the skull and jaws and is not correlated with size. The speculation that the type of echolocation may be more of a determinant of evolutionary change than the feeding mechanism is addressed. Wide-faced bats are thought to be capable of eating hard prey items (durophagus) and are probably non- discriminating, aurally less sophisticated insect generalists while the carnivorous and non-durophagus insectivorous bats may be more discriminating and aurally more sophisticated in what they eat.
title Functional cranial analysis of large animalivorous bats (Microchiroptera)
topic Biodiversity
Mammalia
Chiroptera
Chordata
Animalia
bats
bat
url https://doi.org/10.5281/zenodo.13504103