Over 10 mio. titler Fri fragt ved køb over 499,- Hurtig levering Forlænget returret til 31/01/25

Numerical Methods and Advanced Simulation in Biomechanics and Biological Processes

Forfatter: info mangler
Bog
  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

Numerical Methods and Advanced Simulation in Biomechanics and Biological Processes covers new and exciting modeling methods to help bioengineers tackle problems for which the Finite Element Method is not appropriate. The book covers a wide range of important subjects in the field of numerical methods applied to biomechanics, including bone biomechanics, tissue and cell mechanics, 3D printing, computer assisted surgery and fluid dynamics. Modeling strategies, technology and approaches are continuously evolving as the knowledge of biological processes increases. Both theory and applications are covered, making this an ideal book for researchers, students and R&D professionals.

Læs hele beskrivelsen
Detaljer
  • SprogEngelsk
  • Sidetal454
  • Udgivelsesdato05-10-2017
  • ISBN139780128117187
  • Forlag Academic Press Inc
  • FormatPaperback
Størrelse og vægt
  • Vægt1270 g
  • coffee cup img
    10 cm
    book img
    21,6 cm
    27,6 cm

    Findes i disse kategorier...

    Se andre, der handler om...

    Adaptation Electromagnetic fields Finite element method Medical imaging Myocardial infarction Anisotropy Tissue engineering Bone remodeling Cutting Heart valves Diffusion Growth Biomechanics Morphology Fibrosis Stem cells Magnetic resonance imaging Thrombosis Fracture Articular cartilage Bone regeneration Stochastic processes Cartilage Finite element analysis Fusion Left ventricle Chemotaxis Bioprinting Numerical Simulation Finite element Reaction Diffusion Boundary Element Analysis Stent Human exposure Stiffness Heart Valve Lattice Boltzmann method Constitutive modeling Multiphase Flows Ultrasound Imaging Damage Nanofiber Meshless Smoothed particle hydrodynamics Adipocytes Mesh free methods Agent-based modeling ^ Agent-based model Mechanobiology Finite Element Simulation Immersed Boundary Method Boundary Element Method Soft Tissues Restenosis Cell mechanics Hybrid model Biofabrication Bone Tissue Engineering NNRPIM Theory of Porous Media Turing patterns Multiscale Meshless methods 3D Numerical Simulation Scaffold Design Discontinuous Galerkin method Collocation Galerkin Lattice-boltzmann 3D computational modeling Bio-CAD Bio 3D printing Biophysicomathematical model BMP2Dentinal tubules Bacterial cellulose hydrogel Cardiovascular flows Biofluidics Cell spheroids Biological Flows Cardiovascular flow cellular activity Cellular Potts model DC PSE Dual boundary element method Cell-based model Diffusion tensor Fibrous network DLX3Finite element analysis Cortical bone Finite volume particle method Deformable cell models Intracellular modeling Hyperviscoelasticity Extracellular matrix formation Lattice-free model Finite element technique Modified MLS Multicomponent flows Mechanoelectrochemical model Noggin MTLED Induced current density RBC deformation Realistic models Strong form In silico medicine Lattice Boltzmann Models Specific absorption rate (SAR)Spurious velocities Myocytes numerical schemes RPIM Multiphase models Snail trail model Radial point interpolators Weak form
    Machine Name: SAXO080