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Titlebook: Developments and Novel Approaches in Biomechanics and Metamaterials; Bilen Emek Abali,Ivan Giorgio Book 2020 Springer Nature Switzerland A

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Self-similar Structure and HamiltonicityGFR-2 and . integrin membrane dynamics by a multi-physics model, to identify how ligands stimulation induces the polarization of receptors in cell protrusions and in the basal aspect of ECs plated on a ligand-enriched ECM. The research for new anti-angiogenic solutions through the controlled activat
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Hamiltonian Cycle Problem and Markov Chainscleus mechanosensitivity, which has been tested extensively experimentally and computationally. We now explore the hypothesis that nucleosensitivity could be a mechanism for cells to optimally find microenvironments suited for mitosis, providing mechanical stability and relaxation. By means of a com
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Ludwig D. Faddeev,Leon A. Takhtajanobtain that these amplitude ratios depend on the elastic stiffness, the magnetic field and on the thermal properties of the considered bodies. Also the case of stress-free boundary has been considered. The effect of the magnetic and rotation fields is investigated via suitable numerical computations
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Ludwig D. Faddeev,Leon A. Takhtajanan increase of the interval of frequencies of the unstable zero steady-state solutions, and a larger range of frequencies for which the system has stable steady-state solutions for amplitudes larger than 0.5 of the gap.
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Algorithmic Formulation of Bone Fabric Evolution Based on the Dissipation Principle: A 2D Finite-Eles iterative routine allows one to compute and update the orthotropic elastic properties of bone material in each element of the FE mesh. Stresses and strains are computed via FEA and fed forward into the rotary remodeling algorithm, resulting in the evolution of bone tissue material axes. In the fir
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