Three-dimensional biomechanics of coronary arteries
From MaRDI portal
Publication:1625271
DOI10.1016/j.ijengsci.2018.03.002zbMath1423.74615OpenAlexW2808350890WikidataQ129699119 ScholiaQ129699119MaRDI QIDQ1625271
Alireza Gholipour, Mergen H. Ghayesh, Rajiv Mahajan, Anthony C. Zander
Publication date: 29 November 2018
Published in: International Journal of Engineering Science (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.ijengsci.2018.03.002
Fluid-solid interactions (including aero- and hydro-elasticity, porosity, etc.) (74F10) Finite element methods applied to problems in solid mechanics (74S05) Biomechanics (92C10) Biomechanical solid mechanics (74L15) Physiological flows (76Z05)
Related Items
Nonlinear biomechanics of bifurcated atherosclerotic coronary arteries ⋮ A review on the mechanics of nanostructures ⋮ A hyperelastic model for corneal stroma accounting for cross-linking and damage ⋮ On the application of simplified rheological models of fluid in the hydraulic fracture problems ⋮ A review on the mechanics of functionally graded nanoscale and microscale structures ⋮ On the shell model for human eye in Glaucoma disease ⋮ Chaotic motion analysis of fluid-conveying viscoelastic nanotubes ⋮ Global dynamics of fluid conveying nanotubes ⋮ Chaos in fluid-conveying NSGT nanotubes with geometric imperfections ⋮ A review on the biomechanics of coronary arteries ⋮ A fractional approach to 3D artery simulation under a regular pulse load ⋮ In vivo based biomechanics of right and left coronary arteries
Uses Software
Cites Work
- Absorbing boundary conditions for a 3D non-Newtonian fluid-structure interaction model for blood flow in arteries
- A 3-D framework for arterial growth and remodeling in response to altered hemodynamics
- Modeling in cardiovascular biomechanics
- An unsteady analysis of non-Newtonian blood flow through tapered arteries with a stenosis
- Two-dimensional blood flow through tapered arteries under stenotic conditions
- A micromechanical approach to volumetric and surface growth in the framework of shape optimization
- Fluid-structure interaction simulation of pulse propagation in arteries: numerical pitfalls and hemodynamic impact of a local stiffening
- Modeling collagen recruitment in hyperelastic bio-material models with statistical distribution of the fiber orientation
- Stability of an inflated hyperelastic membrane tube with localized wall thinning
- Nonlinear dynamics of a geometrically imperfect microbeam based on the modified couple stress theory
- Reconstruction of the residual stresses in a hyperelastic body using ultrasound techniques
- Three-dimensional nonlinear size-dependent behaviour of Timoshenko microbeams
- A new generalized Oldroyd-B model for blood flow in complex geometries
- Thermo-mechanical dynamics of perfect and imperfect Timoshenko microbeams
- On the isotropic and anisotropic viscosity of suspensions containing particles of diverse shapes and orientations
- Effect of stress-softening on the ballooning motion of hyperelastic strings
- The influence of anisotropic growth and geometry on the stress of solid tumors
- Vibration analysis of porous functionally graded nanoplates
- Rate-dependent behavior of connective tissue through a micromechanics-based hyper viscoelastic model
- Redirection of a crack driven by viscous fluid
- Dynamics of functionally graded viscoelastic microbeams
- On vibrations of functionally graded viscoelastic nanobeams with surface effects
- Modelling size-dependent bending, buckling and vibrations of 2D triangular lattices by strain gradient elasticity models: applications to sandwich beams and auxetics
- 3D couple-stress moduli of porous polymeric biomaterials using \(\mu\) CT image stack and FE characterization
- Effective viscoelastic properties of short-fiber reinforced composites
- Size-dependent performance of microgyroscopes
- On the overall viscoelastic behavior of graphene/polymer nanocomposites with imperfect interface
- Determination of pressure data from velocity data with a view toward its application in cardiovascular mechanics. I: Theoretical considerations
- Viscoelastically coupled size-dependent dynamics of microbeams
- Oscillations of functionally graded microbeams
- Fraction-exponential representation of the viscoelastic properties of dentin
- Motion characteristics of bilayered extensible Timoshenko microbeams
- Dynamic response of biaxially loaded double-layer viscoelastic orthotropic nanoplate system under a moving nanoparticle
- Transport of platelets induced by red blood cells based on mixture theory
- Nonlinear oscillations of viscoelastic microplates
- Reconstruction of nonuniform residual stress for soft hyperelastic tissue via inverse spectral techniques
- Fluid-structure interaction within three-dimensional models of an idealized arterial wall
- 3D plastic collapse and brittle fracture surface models of trabecular bone from asymptotic homogenization method
- Pulsatile flow of an incompressible, inhomogeneous fluid in a smoothly expanded vascular tube
- An implicit elastic theory for lung parenchyma
- MODELLING OF ATHEROSCLEROTIC PLAQUE GROWTH USING FLUID–STRUCTURE INTERACTION
- Determination of pressure data from velocity data with a view towards its application in cardiovascular mechanics. II: A study of aortic valve stenosis