The body temperature of Tyrannosaurus rex

Despite an extensive history of study, quantitative constraints on the thermophysiology of Tyrannosaurus rex remain limited. Here, we derive a thermodynamically based determination of T. rex body temperatures from clumped isotopes in tooth enamel. Measurements of three T. rex teeth from the Late Cretaceous Hell Creek Formation yield a temperature of 36.3 ± 2.5°C (1 SE), comparable to modern endotherms. Teeth of coeval Hell Creek Formation crocodilians yielded temperatures significantly lower than did those of T. rex. Comparison with proxy-derived paleotemperatures and model simulations indicates that T. rex maintained a higher body temperature than its environment. Projected habitat suitability for T. rex based on these results shows that most of the North American paleocontinent, including colder and higher latitudes, were potentially accessible to the species.

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Publication Details

Journal
Science Advances
Published
2026-09-16
DOI
https://doi.org/10.1126/sciadv.aeb7653
Primary Topic
Paleontology and Evolutionary Biology
Type
article
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article

The body temperature of Tyrannosaurus rex

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Paleontology and Evolutionary Biology
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The body temperature of Tyrannosaurus rex

Aradhna Tripati, Alfio Alessandro Chiarenza, Robin B. Trayler, Gabriele Larocca Conte, Alex Farnsworth, Sora L. Kim, Luis M. Chiappe, Paul J. Valdes, Robert A. Eagle, Randon J. Flores
article en

Abstract

Despite an extensive history of study, quantitative constraints on the thermophysiology of Tyrannosaurus rex remain limited. Here, we derive a thermodynamically based determination of T. rex body temperatures from clumped isotopes in tooth enamel. Measurements of three T. rex teeth from the Late Cretaceous Hell Creek Formation yield a temperature of 36.3 ± 2.5°C (1 SE), comparable to modern endotherms. Teeth of coeval Hell Creek Formation crocodilians yielded temperatures significantly lower than did those of T. rex. Comparison with proxy-derived paleotemperatures and model simulations indicates that T. rex maintained a higher body temperature than its environment. Projected habitat suitability for T. rex based on these results shows that most of the North American paleocontinent, including colder and higher latitudes, were potentially accessible to the species.

Science AdvancesVol. 12(38)
Planetary Science Institute (US), North Carolina Museum of Natural Sciences (US), University of California, Merced (US), University of California, Los Angeles (US), Chapman University (US), Chinese Academy of Sciences (CN), Natural History Museum of Los Angeles County (US), University of Bristol (GB), Institute of Tibetan Plateau Research (CN), Institute of the Environment, University College London (GB)
Life in Land
Openalex Percentile: Top 8%
Paleontology and Evolutionary Biology
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