Literature DB >> 17021914

Taphonomic evidence for high-speed adapted fins in thunniform ichthyosaurs.

Theagarten Lingham-Soliar1, Gerhard Plodowski.   

Abstract

Ichthyosaurs have been compared with the fast-swimming thunniform groups of marine vertebrates, tuna, lamnid sharks, and dolphins, based on similarity of shape of the body and locomotory organs. In addition to shape, high-tensile stiffness of the control surfaces has been shown to be essential in maximizing hydrodynamic efficiency in extant thunniform swimmers. To date, there has been no evidence of a stiffening support system for the dorsal fin and dorsal lobe of the caudal fin in ichthyosaurs, the sole stiffening structure of the ventral lobe being an extension of the vertebral column along its leading edge. Stenopterygius SMF 457 is arguably the best soft-tissue preserved ichthyosaur specimen known. Here, we examine soft-tissue preservation in this specimen in the control surfaces and provide the first evidence of a complex architecture of stiff fibers in the dorsal and caudal fins. We find by comparisons and by analogy that these fibers provided a remarkable mechanism for high tensile stiffness and efficiency of the locomotory organs virtually identical to that of the great white shark, Carcharodon carcharias. It is the first mechanostructural study of the control surfaces of a Jurassic ichthyosaur that adds essential evidence in support of the view that these forms were high-speed thunniform swimmers.

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Year:  2006        PMID: 17021914     DOI: 10.1007/s00114-006-0160-8

Source DB:  PubMed          Journal:  Naturwissenschaften        ISSN: 0028-1042


  8 in total

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4.  Caudal fin allometry in the white shark Carcharodon carcharias: implications for locomotory performance and ecology.

Authors:  Theagarten Lingham-Soliar
Journal:  Naturwissenschaften       Date:  2005-03-17

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6.  Dorsal fin in the white shark, Carcharodon carcharias: a dynamic stabilizer for fast swimming.

Authors:  Theagarten Lingham-Soliar
Journal:  J Morphol       Date:  2005-01       Impact factor: 1.804

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  8 in total
  7 in total

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7.  Flexibility of Heterocercal Tails: What Can the Functional Morphology of Shark Tails Tell Us about Ichthyosaur Swimming?

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  7 in total

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