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Delivery of Organic Matter to the Early Earth
The Vigor, Futility, and Application of Microbial Element Cycles in Alkaline Soda Lakes
Seasonal paleoecological records from antler collagen δ 13 C and δ 15 N
Construction and Characterization of a Nanostructured Biocatalyst Consisting of Immobilized Lipase on Mg-Amino-Clay
STRUCTURAL AND PROTEIN PRESERVATION IN FOSSIL WHALE BONES FROM THE PISCO FORMATION (MIDDLE-UPPER MIOCENE), PERU
Toxicity assessment of gold ions and gold nanoparticles to golden perch larvae ( Macquaria ambigua )
Three-phase partitioning and immobilization of Bacillus methylotrophicus Y37 cellulase on organo-bentonite and its kinetic and thermodynamic properties
EXPERIMENTAL MATURATION OF FEATHERS: IMPLICATIONS FOR INTERPRETATIONS OF FOSSIL FEATHERS
12. Intersection of Biogeochemistry with the Study of Meteorites
Facile immobilization of lipase based on Pickering emulsion via a synergistic stabilization by palygorskite–enzyme
THE LIMITS OF BURGESS SHALE-TYPE PRESERVATION: ASSESSING THE EVIDENCE FOR PRESERVATION OF THE BLOOD PROTEIN HEMOCYANIN IN THE BURGESS SHALE
Changes in avian cortical and medullary bone mineral composition and organization during acid-induced demineralization
Macroscopic electrostatic effects in ATR-FTIR spectra of modern and archeological bones
Abstract: The preservation of the wing membrane of pterosaurs is very poor and the available fossil evidence does not allow its properties to be reconstructed. In contrast, the fossil record for the wing bones is relatively good and the advent of CT scanning has made it possible to build high-fidelity structural models of the wing spar. The bending strength of the wing spar of a 6 m wingspan ornithocheirid pterosaur is used to infer the likely membrane tension. The tensions required to suppress aeroelastic flutter and to minimize ballooning of the membrane under flight loads are also estimated. All three estimates are of similar magnitude and imply that the membrane must have contained high-modulus material, supporting the view that the reinforcing aktinofibrils were keratinous.