Computational Modeling in Biomechanics

Availability of advanced computational technology has fundamentally altered the investigative paradigm in the field of biomechanics. Armed with sophisticated computational tools, researchers are seeking answers to fundamental questions by exploring complex biomechanical phenomena at the molecular, c...

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Detalles Bibliográficos
Autor Corporativo: SpringerLink (-)
Otros Autores: De, Suvranu (-), Guilak, Farshid, Mofrad R. K., Mohammad
Formato: Libro electrónico
Idioma:Inglés
Publicado: Dordrecht : Springer Netherlands 2010.
Colección:Springer eBooks.
Acceso en línea:Conectar con la versión electrónica
Ver en Universidad de Navarra:https://innopac.unav.es/record=b33052840*spi
Tabla de Contenidos:
  • Biofluids and Mass Transport
  • Immersed Boundary/Continuum Methods
  • Computational Modeling of ATP/ADP Concentration at the Vascular Surface
  • Development of a Lattice-Boltzmann Method for Multiscale Transport and Absorption with Application to Intestinal Function
  • Cardiovasular Biomechanics
  • Computational Models of Vascular Mechanics
  • Computational Modeling of Vascular Hemodynamics
  • Computational Modeling of Coronary Stents
  • Computational Modeling of Aortic Heart Valves
  • Computational Modeling of Growth and Remodeling in Biological Soft Tissues: Application to Arterial Mechanics
  • Musculoskeletal Biomechanics
  • Computational Modeling of Trabecular Bone Mechanics
  • Computational Modeling of Extravascular Flow in Bone
  • Computational Modeling of Cell Mechanics in Articular Cartilage
  • Computational Models of Tissue Differentiation
  • Soft Tissue Biomechanics
  • A Review of the Mathematical and Computational Foundations of Biomechanical Imaging
  • Interactive Surgical Simulation Using a Meshfree Computational Method
  • Computational Biomechanics of the Human Cornea
  • Biomolecular Mechanics and Multiscale Modeling
  • Identifying the Reaction Mechanisms of Inteins with QM/MM Multiscale Methods
  • Computational Scale Linking in Biological Protein Materials
  • How to Measure Biomolecular Forces: A zTug-of-Wary Approach
  • Mechanics of Cellular Membranes.