Pages that link to "Item:Q1774825"
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The following pages link to A viscoelastic approach to the modelling of hydrocephalus (Q1774825):
Displaying 15 items.
- Dual-porosity poroviscoelasticity and quantitative hydromechanical characterization of the brain tissue with experimental hydrocephalus data (Q739713) (← links)
- A theoretical study of the effect of intraventricular pulsations on the pathogenesis of hydroce\-phalus (Q846409) (← links)
- Brain tissue deforms similarly to filled elastomers and follows consolidation theory (Q1019394) (← links)
- Numerical study on the mechanical response of brain under the impact loading based on elastic-viscoelastic model (Q1733639) (← links)
- A viscoelastic model of the brain parenchyma with pulsatile ventricular pressure (Q1780525) (← links)
- General solutions to poroviscoelastic model of hydrocephalic human brain tissue (Q1786859) (← links)
- A multiple-network poroelastic model for biological systems and application to subject-specific modelling of cerebral fluid transport (Q2295784) (← links)
- Mixed and Galerkin finite element approximation of flow in a linear viscoelastic porous medium (Q2449928) (← links)
- A quasi-linear viscoelastic constitutive equation for the brain: application to hydrocephalus (Q2509177) (← links)
- A mechano-electrochemical model of brain neuro-mechanics: application to normal pressure hydrocephalus (Q2862151) (← links)
- Cerebral water transport using multiple-network poroelastic theory: application to normal pressure hydrocephalus (Q3097643) (← links)
- Effect of non-linear permeability in a spherically symmetric model of hydrocephalus (Q3445583) (← links)
- An axisymmetric and fully 3D poroelastic model for the evolution of hydrocephalus (Q3445584) (← links)
- A Study of Brain Biomechanics Using Hamilton’s Principle: Application to Hydrocephalus (Q3459724) (← links)
- A viscoelastic fluid model for brain injuries (Q4795204) (← links)