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Reptile-like physiology in Early Jurassic stem-mammals
by
Newham, Elis
, Benton, Michael J.
, Schneider, Philipp
, Corfe, Ian J.
, Gill, Pamela G.
, Zeller-Plumhoff, Berit
, Williams, Katherine A.
, Brown, Kate Robson
, Jernvall, Jukka
, Tafforeau, Paul
, Kallonen, Aki
, Navarro, Charles
, Haberthür, David
, Gostling, Neil J.
, Fernandez, Vincent
, Kankaanpää, Tuomas
, Brewer, Philippa
, Richards, Kelly
, Pacureanu, Alexandra
, Suhonen, Heikki
in
631/181/414
/ 631/601/1737
/ Blood flow
/ Bone blood flow
/ Cementum
/ Evolution
/ Flow velocity
/ Fossils
/ Humanities and Social Sciences
/ Jurassic
/ Life Sciences
/ Life span
/ Mammals
/ Metabolic rate
/ Metabolism
/ multidisciplinary
/ Physiology
/ Reptiles
/ Science
/ Science (multidisciplinary)
/ Synchrotron radiation
/ Synchrotrons
/ Teeth
/ X ray imagery
2020
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Reptile-like physiology in Early Jurassic stem-mammals
by
Newham, Elis
, Benton, Michael J.
, Schneider, Philipp
, Corfe, Ian J.
, Gill, Pamela G.
, Zeller-Plumhoff, Berit
, Williams, Katherine A.
, Brown, Kate Robson
, Jernvall, Jukka
, Tafforeau, Paul
, Kallonen, Aki
, Navarro, Charles
, Haberthür, David
, Gostling, Neil J.
, Fernandez, Vincent
, Kankaanpää, Tuomas
, Brewer, Philippa
, Richards, Kelly
, Pacureanu, Alexandra
, Suhonen, Heikki
in
631/181/414
/ 631/601/1737
/ Blood flow
/ Bone blood flow
/ Cementum
/ Evolution
/ Flow velocity
/ Fossils
/ Humanities and Social Sciences
/ Jurassic
/ Life Sciences
/ Life span
/ Mammals
/ Metabolic rate
/ Metabolism
/ multidisciplinary
/ Physiology
/ Reptiles
/ Science
/ Science (multidisciplinary)
/ Synchrotron radiation
/ Synchrotrons
/ Teeth
/ X ray imagery
2020
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Do you wish to request the book?
Reptile-like physiology in Early Jurassic stem-mammals
by
Newham, Elis
, Benton, Michael J.
, Schneider, Philipp
, Corfe, Ian J.
, Gill, Pamela G.
, Zeller-Plumhoff, Berit
, Williams, Katherine A.
, Brown, Kate Robson
, Jernvall, Jukka
, Tafforeau, Paul
, Kallonen, Aki
, Navarro, Charles
, Haberthür, David
, Gostling, Neil J.
, Fernandez, Vincent
, Kankaanpää, Tuomas
, Brewer, Philippa
, Richards, Kelly
, Pacureanu, Alexandra
, Suhonen, Heikki
in
631/181/414
/ 631/601/1737
/ Blood flow
/ Bone blood flow
/ Cementum
/ Evolution
/ Flow velocity
/ Fossils
/ Humanities and Social Sciences
/ Jurassic
/ Life Sciences
/ Life span
/ Mammals
/ Metabolic rate
/ Metabolism
/ multidisciplinary
/ Physiology
/ Reptiles
/ Science
/ Science (multidisciplinary)
/ Synchrotron radiation
/ Synchrotrons
/ Teeth
/ X ray imagery
2020
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Journal Article
Reptile-like physiology in Early Jurassic stem-mammals
2020
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Overview
Despite considerable advances in knowledge of the anatomy, ecology and evolution of early mammals, far less is known about their physiology. Evidence is contradictory concerning the timing and fossil groups in which mammalian endothermy arose. To determine the state of metabolic evolution in two of the earliest stem-mammals, the Early Jurassic
Morganucodon
and
Kuehneotherium
, we use separate proxies for basal and maximum metabolic rate. Here we report, using synchrotron X-ray tomographic imaging of incremental tooth cementum, that they had maximum lifespans considerably longer than comparably sized living mammals, but similar to those of reptiles, and so they likely had reptilian-level basal metabolic rates. Measurements of femoral nutrient foramina show
Morganucodon
had blood flow rates intermediate between living mammals and reptiles, suggesting maximum metabolic rates increased evolutionarily before basal metabolic rates. Stem mammals lacked the elevated endothermic metabolism of living mammals, highlighting the mosaic nature of mammalian physiological evolution.
Modern mammals are endothermic, but it has not been clear when this type of metabolism evolved. Here, Newham et al. analyse tooth and bone structure in Early Jurassic stem-mammal fossils to estimate lifespan and blood flow rates, which inform about basal and maximum metabolic rates, respectively, and show these stem-mammals had metabolic rates closer to modern ectothermic reptiles than to endothermic mammals.
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