Sails on tails: How Laser Stimulated Fluorescence aids the understanding of pterosaur flight
ID:119 View Protection:ATTENDEE Updated Time:2025-05-21 16:49:53 Hits:179 Oral Presentation

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Abstract
Pterosaurs, extinct Mesozoic reptiles, were the first and largest vertebrates to achieve active volancy (Jagielska & Brusatte, 2021). The pioneers of flight, long-tailed non-pterodactyloid pterosaurs sported long caudal vertebral sections ending with a thin, soft tissue vane. The vane varies in shape between species and ontogenetic stages (Bennett, 1995), being rhomboid in shape in sub-adult Rhamphorhynchus or multi-lobate as in Sordes or Pterorhynchus. In the following study (Jagielska et al., 2024) Laser-Stimulated Fluorescence (LSF) (Kaye et al., 2015) was used on multiple specimens of Rhamphorhynchus to reveal a previously unseen cross-linking lattice supporting the tail membrane. The intersecting lattice likely facilitated dynamic tensioning limiting drag-inducing flutter by maintaining membrane stiffness. The research shows how emerging screening techniques, such as LSF, help reconstruct the evolution of flight and the appearance of long-gone elusive animals.
Pterosaurs, extinct Mesozoic reptiles, were the first and largest vertebrates to achieve active volancy (Jagielska & Brusatte, 2021). The pioneers of flight, long-tailed non-pterodactyloid pterosaurs sported long caudal vertebral sections ending with a thin, soft tissue vane. The vane varies in shape between species and ontogenetic stages (Bennett, 1995), being rhomboid in shape in sub-adult Rhamphorhynchus or multi-lobate as in Sordes or Pterorhynchus. In the following study (Jagielska et al., 2024) Laser-Stimulated Fluorescence (LSF) (Kaye et al., 2015) was used on multiple specimens of Rhamphorhynchus to reveal a previously unseen cross-linking lattice supporting the tail membrane. The intersecting lattice likely facilitated dynamic tensioning limiting drag-inducing flutter by maintaining membrane stiffness. The research shows how emerging screening techniques, such as LSF, help reconstruct the evolution of flight and the appearance of long-gone elusive animals.
Keywords
flight,evolution,pterosaurs
Speaker
Natalia Jagielska
Post-Doctoral Resear Chinese University of Hong Kong

Submission Author
Natalia Jagielska Chinese University of Hong Kong
Tom Kaye Foundation for Scientific Advancement
Michael Habib University of California
Tatsuya Hirasawa The University of Tokyo
Michael Pittman Chinese University of Hong Kong
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Important Date
  • Conference Date

    Jun 10

    2025

    to

    Jun 13

    2025

  • Apr 15 2025

    Draft paper submission deadline

Sponsored By
National Natural Science Foundation of China
Geobiology Society
National Committee of Stratigraphy of China
Ministry of Science and Technology
Geological Society of China
Paleontological Society of China
Nanjing Institute of Geology and Palaeontology, Chinese Academy of Sciences (CAS)
Institute of Vertebrate Paleontology and Paleoanthropology, CAS
International Commission on Stratigraphy
International Paleontological Association
Organized By
State Key Laboratory of Biogeology and Environmental Geology, China University of Geosciences (CUG, Wuhan)
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