Thermoregulation Variation in Vertebrates Reveals Differences in Thermal Fatigue Resistance of Bones

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Auteurs principaux: Brewster, Parker R., Akins, Jake E., Holycross, Casey M., Farzbod, Farhad
Format: Preprint
Publié: 2025
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author Brewster, Parker R.
Akins, Jake E.
Holycross, Casey M.
Farzbod, Farhad
author_facet Brewster, Parker R.
Akins, Jake E.
Holycross, Casey M.
Farzbod, Farhad
contents In this study, we propose the hypothesis that there is a significant difference in thermal cycling fatigue resistance between the bones of ectothermic and endothermic animals. We performed an experiment to test whether bones of endothermic animals, having potentially lost their ability to adapt to thermal cycling, exhibit reduced resistance to thermal fatigue compared to ectothermic animals, which may have retained this adaptive trait due to their environmental conditions. The change in stiffness were determined using shifts in the resonant peaks of the frequency spectrum obtained from Resonant Ultrasonic Spectroscopy (RUS). To achieve this, samples of compact (cortical) and spongy bone tissue were extracted and polished before undergoing a 29-day period of thermal cycling. The changes in the resonance frequencies were then observed. Changes in resonant frequencies imply corresponding changes in elastic constants. The primary findings indicated that bones from ectothermic species exhibited minimal changes in elastic properties compared to those from endothermic species, as evidenced by the smaller shifts in resonant peak magnitudes following thermal cycling.
format Preprint
id arxiv_https___arxiv_org_abs_2504_18613
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Thermoregulation Variation in Vertebrates Reveals Differences in Thermal Fatigue Resistance of Bones
Brewster, Parker R.
Akins, Jake E.
Holycross, Casey M.
Farzbod, Farhad
Biological Physics
Applied Physics
In this study, we propose the hypothesis that there is a significant difference in thermal cycling fatigue resistance between the bones of ectothermic and endothermic animals. We performed an experiment to test whether bones of endothermic animals, having potentially lost their ability to adapt to thermal cycling, exhibit reduced resistance to thermal fatigue compared to ectothermic animals, which may have retained this adaptive trait due to their environmental conditions. The change in stiffness were determined using shifts in the resonant peaks of the frequency spectrum obtained from Resonant Ultrasonic Spectroscopy (RUS). To achieve this, samples of compact (cortical) and spongy bone tissue were extracted and polished before undergoing a 29-day period of thermal cycling. The changes in the resonance frequencies were then observed. Changes in resonant frequencies imply corresponding changes in elastic constants. The primary findings indicated that bones from ectothermic species exhibited minimal changes in elastic properties compared to those from endothermic species, as evidenced by the smaller shifts in resonant peak magnitudes following thermal cycling.
title Thermoregulation Variation in Vertebrates Reveals Differences in Thermal Fatigue Resistance of Bones
topic Biological Physics
Applied Physics
url https://arxiv.org/abs/2504.18613