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GeoRef Categories
Era and Period
Epoch and Age
Book Series
Date
Availability
biomechanics
A new biomechanical approach to cranial suture function: the role of contact elements in linear and nonlinear models
Celebrating dinosaurs: their behaviour, evolution, growth, and physiology
HETEROPODY INDEX: A SQUARE PEG IN A ROUND HOLE?
Did shell-crushing predators drive the evolution of ammonoid septal shape?
Mandibular force profiles and tooth morphology in growth series of Albertosaurus sarcophagus and Gorgosaurus libratus (Tyrannosauridae: Albertosaurinae) provide evidence for an ontogenetic dietary shift in tyrannosaurids 1
How to build a dinosaur: Musculoskeletal modeling and simulation of locomotor biomechanics in extinct animals
Endocranial morphology of the petalichthyid placoderm Ellopetalichthys scheii from the Middle Devonian of Arctic Canada, with remarks on the inner ear and neck joint morphology of placoderms
SKELETAL TRAUMA WITH IMPLICATIONS FOR INTRATAIL MOBILITY IN EDMONTOSAURUS ANNECTENS FROM A MONODOMINANT BONEBED, LANCE FORMATION (MAASTRICHTIAN), WYOMING USA
Bringing planktonic crinoids back to the bottom: Reassessment of the functional role of scyphocrinoid loboliths
The function(s) of bone ornamentation in the crocodylomorph osteoderms: a biomechanical model based on a finite element analysis
Biting mechanics determines craniofacial morphology among extant diprotodont herbivores: dietary predictions for the giant extinct short-faced kangaroo, Simosthenurus occidentalis
Using three-dimensional, digital models of pterosaur skulls for the investigation of their relative bite forces and feeding styles
Abstract: Simple, three-dimensional, digital models of the crania and mandibles of 22 pterosaurs – 13 pterodactyloids and nine non-pterodactyloids (‘rhamphorhynchoids’) – were generated to investigate gross-level mechanical aspects of the skulls as they would related to feeding behaviour such as bite force and speed of jaw motions. The key parameter was the determination of second moments of area of the mid-muzzle region and the computation of the bending moment relative to the occiput. The shorter, stockier skulls of basal ‘rhamphorhynchoids’ were the strongest for their size in terms of potential resistance to dorso-ventral bending, and this finding correlates with their robust dentitions. More derived ‘rhamphorhynchoids’ showed the start of a trend towards weaker skulls, but faster jaw adduction was interpreted to be an adaptation for the snatching of small prey. Pterodactyloids continued the trend to lengthen the skull and to reduce its cross-sectional area, resulting in less stiff skulls, but more rapid opening and closing of the jaws. Changes in the rear of the skulls and the development of coronoid eminences on the mandibles of all the pterodactyloids are correlated with the reduction in bite force and a concomitant increase in jaw closing speed.
Pelvic musculature of Vectidraco daisymorrisae and consequences for pterosaur locomotion
Abstract: The unique morphology of pterosaurs makes them a compelling group to study, but the lack of ready analogues or descendant clades presents problems when inferring their biology and ecology. In this paper, the extant phylogenetic bracket is used to reconstruct the musculature of the pterosaur Vectidraco daisymorrisae and a detailed comparison is made between the musculature of this taxon and other reconstructions in the literature. M. iliofibularis is reconstructed as originating upon the angular process of the posterior iliac process, putting it into a mechanically advantageous position as an abductor. M. flexor tibialis internus is reconstructed as greatly enlarged over the ancestral state, probably in response to the reduction of M. caudofemoralis brevis and the tail. This enlargement is considered to correspond to the increasing role of M. flexor tibialis internus as a hip retractor.
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.
Craniodental morphology and diet of Leptarctus oregonensis (Mammalia, Carnivora, Mustelidae) from the Mascall Formation (Miocene) of central Oregon
Craniodental functional evolution in sauropodomorph dinosaurs
Herbivorous dinosaur jaw disparity and its relationship to extrinsic evolutionary drivers
Polarity of concavo-convex intervertebral joints in the necks and tails of sauropod dinosaurs
Translating taxonomy into the evolution of conodont feeding ecology
The Slottsmøya marine reptile Lagerstätte : depositional environments, taphonomy and diagenesis
Abstract The Late Jurassic Slottsmøya Member Lagerstätte on Spitsbergen offers a unique opportunity to study the relationships between vertebrate fossil preservation, invertebrate occurrences and depositional environment. In this study, 21 plesiosaurian and 17 ichthyosaur specimens are described with respect to articulation, landing mode, preservation, and possible predation and scavenging. The stratigraphic distribution of marine reptiles in the Slottsmøya Member is analysed, and a correlation between high total organic content, low oxygen levels, few benthic invertebrates and optimal reptile preservation is observed. A new model for 3D preservation of vertebrates in highly compacted organic shales is explained. Supplementary material: A taphonomic description of each marine reptile specimen is available at https://doi.org/10.6084/m9.figshare.c.2133549