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Titlebook: IUTAM Symposium on Cellular, Molecular and Tissue Mechanics; Proceedings of the I Krishna Garikipati,Ellen M. Arruda Conference proceedings

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S. A. Safran,R. De,A. Zemelow enlarged canine teeth and specialized shearing carnassial teeth. The shearing teeth involved the opposition of the fourth upper premolar with the first lower molar. The miacids did not have an ossified tympanic bulla and the carpal bones remained unfused. In the Late Eocene and Early Oligocene th
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S. Jungbauer,B. Aragües,J. P. Spatz,R. Kemkemerickly yet silently through forests, attaining rapid bursts of speed when necessary; their massive muscles are aligned to deliver powerful attacks, their large canines and strong jaws rip open carcasses, and their scis­ sor-like carnassials slice meat. Partly because of our fear of these attributes,
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may be as important as morphological adaptations. However, although the behavior of many carnivores is poorly known, it is possible to infer a great deal from their morphological adaptations and to use this information in a predictive way to understand their role in particular ecosystems.
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carotenoid metabolites other than vitamin A and related retinoids. Better understanding of the molecular details behind the actions of these carotenoid oxidative metabolites may yield insights into both physiological and pathophysiological processes in human health and disease. For provitamin A car
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L. B. Freundosia on Carotenoids and are included in the published proceedings of these symposia. The history of major publications in the carotenoid field, leading to the development of this series, was outlined in the preface to the series published in Vol. IA. The general philo­ sophy outlined in that preface, with emp978-3-0348-9325-1978-3-0348-9323-7
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Experimental and Computational Investigation of Viscoelasticity of Native and Engineered Ligament an
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A Comparison of a Nonlinear and Quasilinear Viscoelastic Anisotropic Model for Fibrous Tissues
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A Viscoelastic Anisotropic Model for Soft Collageneous Tissues Based on Distributed Fiber–Matrix Uni
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