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Titlebook: Computer Models in Biomechanics; From Nano to Macro Gerhard A. Holzapfel,Ellen Kuhl Conference proceedings 2013 Springer Science+Business M

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Burkard Wördenweber,Wiro Wickordto model the various options and evaluate the resulting characteristics. This paper details these methodologies, their application to planning interventions, and their contributions to generalizable knowledge of Fontan hemodynamics.
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Towards a Coarse-Grained Model for Unfolded Proteinsresidue- and sequence-specific. Our results show that the local interactions can be captured by specifically accounting for the presence of Proline and Glycine in the amino-acid sequence. An upper and lower bound is suggested for the radius of gyration of denatured proteins based on their specific sequence composition.
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A Mathematical Approach for Studying Ca2+-Regulated Smooth Muscle Contractionto perform through . experiments. In this chapter the characteristic behaviors of vascular smooth muscle, specially those relevant from a biomechanical point of view, and the mathematical models able to simulate and mimic those behaviors are reviewed and studied.
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Patient-Specific Surgery Planning for the Fontan Procedureto model the various options and evaluate the resulting characteristics. This paper details these methodologies, their application to planning interventions, and their contributions to generalizable knowledge of Fontan hemodynamics.
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Towards a Coarse-Grained Model for Unfolded Proteinsational dynamics of these proteins, we propose an implicit solvent one-bead per amino-acid coarse-grained (CG) model. For the local backbone interactions, experimentally-obtained Ramachandran plots for the coil regions of proteins are converted into distributions of pseudo-bond and pseudo-dihedral a
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Modeling Collagen-Proteoglycan Structural Interactions in the Human Corneacellular matrix. The cornea can be viewed as a reinforced electrolyte gel involving molecular-scale interactions between collagen fibrils, proteoglycans (PGs) and the mobile ions in the interfibrillar space. The swelling property of the tissue cannot be adequately predicted by Donnan theory for osmo
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