Effects of body plan evolution on the hydrodynamic drag and energy requirements of swimming in ichthyosaurs
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Ichthyosaurs are an extinct group of fully marine tetrapods that were well adapted to aquatic locomotion. During their ~160-million-year existence, they evolved from elongate and serpentine forms into stockier, fish-like animals, convergent with sharks and dolphins. Here, we use computational fluid dynamics (CFD) to quantify the impact of this transition on the energy demands of ichthyosaur swimming for the first time. We run computational simulations of water flow using three-dimensional digital models of nine ichthyosaurs and an extant functional analogue, a bottlenose dolphin, providing the first comparison of ichthyosaur hydrodynamics across phylogeny. Our results show that morphology did not have a major effect on the drag coefficient or the energy cost of steady swimming through geological time. We show that even the early ichthyosaurs produced low levels of drag for a given volume, comparable to those of a modern dolphin, and that deep âtorpedo-shapedâ bodies did not reduce the c...



