Adaptations for stealth in the wing-like flippers of a large ichthyosaur.

Lindgren, Johan; Lomax, Dean R; Szász, Robert-Zoltán; Marx, Miguel; Revstedt, Johan; Göltz, Georg; Sachs, Sven; De La Garza, Randolph G et al. · Nature · 2025

basic_science · Level V

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Abstract

With their superficially shark-like appearance, the Mesozoic ichthyosaurs provide a classic illustration of major morphological adaptations in an ancestrally terrestrial tetrapod lineage following the invasion of marine habitats<sup>1-3</sup>. Much of what is known about ichthyosaur soft tissues derives from specimens with body outlines<sup>4-6</sup>. However, despite offering insights into aspects of biology that are otherwise difficult to envisage from skeletal evidence alone (such as the presence of a crescentic fluke), information on their soft parts has hitherto been limited to a taxonomically narrow sample of small- to dolphin-sized animals<sup>2,4-6</sup>. Here we report the discovery of a metre-long front flipper of the large-bodied Jurassic ichthyosaur Temnodontosaurus, including unique details of its soft-tissue anatomy. In addition to revealing a wing-like planform, the fossil preserves a serrated trailing edge that is reinforced by novel cartilaginous integumental elements, herein denominated chondroderms. We also document chordwise-parallel skin ornamentations and a protracted fleshy distal tip that presumably acted like a flexible winglet in life. By integrating morphological and numerical data, we show that the observed features probably provided hydroacoustic benefits, and conclude that the visually guided<sup>7,8</sup> Temnodontosaurus relied on stealth while hunting in dim-lit pelagic environments. This unexpected combination of control surface modifications represents a previously unrecognized mode of concealment, and underscores the importance of soft-tissue fossils when inferring aspects of palaeoethology and predator-prey palaeoecology.

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