Supermodeled sabercat, predatory behavior in Smilodon fatalis revealed by high-resolution 3D computer simulation
- 9 October 2007
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 104 (41), 16010-16015
- https://doi.org/10.1073/pnas.0706086104
Abstract
The American sabercat Smilodon fatalis is among the most charismatic of fossil carnivores. Despite broad agreement that its extraordinary anatomy reflects unique hunting techniques, after >150 years of study, many questions remain concerning its predatory behavior. Were the "sabers" used to take down large prey? Were prey killed with an eviscerating bite to the abdomen? Was its bite powerful or weak compared with that of modern big cats? Here we quantitatively assess the sabercat's biomechanical performance using the most detailed computer reconstructions yet developed for the vertebrate skull. Our results demonstrate that bite force driven by jaw muscles was relatively weak in S. fatalis, one-third that of a lion (Panthera leo) of comparable size, and its skull was poorly optimized to resist the extrinsic loadings generated by struggling prey. Its skull is better optimized for bites on restrained prey where the bite is augmented by force from the cervical musculature. We conclude that prey were brought to ground and restrained before a killing bite, driven in large part by powerful cervical musculature. Because large prey is easier to restrain if its head is secured, the killing bite was most likely directed to the neck. We suggest that the more powerful jaw muscles of P. leo may be required for extended, asphyxiating bites and that the relatively low bite forces in S. fatalis might reflect its ability to kill large prey more quickly, avoiding the need for prolonged bites.Keywords
This publication has 29 references indexed in Scilit:
- High‐Resolution Three‐Dimensional Computer Simulation of Hominid Cranial MechanicsThe Anatomical Record, 2007
- Computer simulation of feeding behaviour in the thylacine and dingo as a novel test for convergence and niche overlapProceedings Of The Royal Society B-Biological Sciences, 2007
- Sabertooth characters in the clouded leopard (Neofelis nebulosa Griffiths 1821)Journal of Morphology, 2006
- Biomechanics of the rostrum in crocodilians: A comparative analysis using finite‐element modelingThe Anatomical Record Part A: Discoveries in Molecular, Cellular, and Evolutionary Biology, 2006
- Aspects of comparative cranial mechanics in the theropod dinosaurs Coelophysis, Allosaurus and TyrannosaurusZoological Journal of the Linnean Society, 2005
- Biomechanical investigations on the skulls of reptiles and mammalsSenckenbergiana lethaea, 2002
- The Tyrannosaurid metatarsus: Bone strain and inferred ligament functionSenckenbergiana lethaea, 2002
- Cranial design and function in a large theropod dinosaurNature, 2001
- Neck function and predatory behavior in the scimitar toothed catHomotherium latidens(Owen)Journal of Vertebrate Paleontology, 1999
- Parietal depressions in skulls of the extinct saber-toothed felidSmilodon fatalis: evidence of mechanical strainJournal of Vertebrate Paleontology, 1997