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    Effect of Duration of in Vitro Culture Times on MicroRNA cargo in Equine Amniotic Mesenchymal Cells and Their Microvesicles

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    Supplementary files of the paper "Effect of Duration of in Vitro Culture Times on MicroRNA cargo in Equine Amniotic Mesenchymal Cells and Their Microvesicles" Anna Lange-Consiglio, Barbara Lazzari, Flavia Pizzi, Alessandra Stella, Alessia Girani, Arianna Quintè, Fausto Cremonesi, Emanuele Capr

    Effect of Duration of in Vitro Culture Times on MicroRNA cargo in Equine Amniotic Mesenchymal Cells and Their Microvesicles

    No full text
    Supplementary files of the paper "Effect of Duration of in Vitro Culture Times on MicroRNA cargo in Equine Amniotic Mesenchymal Cells and Their Microvesicles" Anna Lange-Consiglio, Barbara Lazzari, Flavia Pizzi, Alessandra Stella, Alessia Girani, Arianna Quintè, Fausto Cremonesi, Emanuele Capr

    Stability and energy decay rates in thermoelasticity

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    We consider the initial-boundary value problem for a linear thermoelastic material characterized by Cattaneo-Maxwell's constitutive equation for the heat flux. We prove existence and uniqueness theorems for weak and strong solutions of the evolutive problem. Moreover, the dissipative effects of Cattaneo-Maxwell's relation allow us to prove, for the unidimensional model, the exponential decay of the energy associated to the system

    Energy decay in Green–Naghdi thermoelasticity with diffusion and dissipative boundary controls

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    We study the asymptotic behavior of the solutions of a three-dimensional hyperbolic system arising in the Green–Naghdi models of thermoelasticity with diffusion of type II and III, in the presence of dissipative boundary controls and prove that the energy exponentially decays in time

    Stability and Thermodynamic Restrictions for a Dual-Phase-Lag Thermal Model

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    In this paper, the seeming inconsistency highlighted by Fabrizio and Lazzari (Stability and second law of thermodynamics in dual-phase-lag heat conduction, Int. J. Heat Mass Transfer 74 (2014), 484-489) and Quintanilla and Racke (A note on stability of dual-phase-lag heat conduction, Int. J. Heat Mass Transfer 49 (2007), 1209-1213) for a thermoelastic material, between the thermodynamic restrictions and the stability conditions is studied. Actually, we show as these results are due to the use of different formulations of the thermodynamic principles, which are not always equivalent. So that, we prove by the model considered in the paper that these two formulations do not lead to the same restrictions on the constitutive equations. This analysis allowed us to restore the compatibility by an appropriate and wide representation of the Second Law

    Free energies and asymptotic behaviour for incompressible viscoelastic fluids

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    The existence, uniqueness and asymptotic stability for an incompressible, linear viscometric fluid is studied using a new free energy, the representation of which is based on the notion of minimal state. A restriction imposed by thermodynamics is also used. Furthermore, an expression for the minimum free energy in the time domain is derived, which shows explicitly its dependence on the minimal state
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