Pages that link to "Item:Q2922511"
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The following pages link to Mathematical modelling of active contraction in isolated cardiomyocytes (Q2922511):
Displaying 29 items.
- Stability of active muscle tissue (Q525440) (← links)
- Primal-mixed formulations for reaction-diffusion systems on deforming domains (Q729280) (← links)
- Numerical methods for a model of cardiac muscle contraction (Q801654) (← links)
- Modeling collagen recruitment in hyperelastic bio-material models with statistical distribution of the fiber orientation (Q1617960) (← links)
- On a vorticity-based formulation for reaction-diffusion-Brinkman systems (Q1713374) (← links)
- Experimental assessment of a myocyte-based multiscale model of cardiac contractile dysfunction (Q1714349) (← links)
- A modeling framework for electro-mechanical interaction between excitable deformable cells (Q1797667) (← links)
- Theoretical analysis of the adaptive contractile behaviour of a single cardiomyocyte cultured on elastic substrates with varying stiffness (Q1798102) (← links)
- Isogeometric analysis of the electrophysiology in the human heart: numerical simulation of the bidomain equations on the atria (Q1986437) (← links)
- Active force generation in cardiac muscle cells: mathematical modeling and numerical simulation of the actin-myosin interaction (Q2022471) (← links)
- Mechanochemical models for calcium waves in embryonic epithelia (Q2081565) (← links)
- Effect of fibre orientation and bulk modulus on the electromechanical modelling of human ventricles (Q2128543) (← links)
- A cardiac electromechanical model coupled with a lumped-parameter model for closed-loop blood circulation (Q2135834) (← links)
- An intergrid transfer operator using radial basis functions with application to cardiac electromechanics (Q2205162) (← links)
- A viscoactive constitutive modeling framework with variational updates for the myocardium (Q2310357) (← links)
- Integrated heart -- coupling multiscale and multiphysics models for the simulation of the cardiac function (Q2310372) (← links)
- A semi-implicit level set method for multiphase flows and fluid-structure interaction problems (Q2375115) (← links)
- Computational modeling of non-linear diffusion in cardiac electrophysiology: a novel porous-medium approach (Q2414615) (← links)
- 3D-0D closed-loop model for the simulation of cardiac biventricular electromechanics (Q2670385) (← links)
- Fully Eulerian finite element approximation of a fluid-structure interaction problem in cardiac cells (Q2952387) (← links)
- Segregated Algorithms for the Numerical Simulation of Cardiac Electromechanics in the Left Human Ventricle (Q3300479) (← links)
- (Q3331012) (← links)
- An integrated formulation of anisotropic force–calcium relations driving spatio-temporal contractions of cardiac myocytes (Q3579065) (← links)
- MODELING OF PROTEIN INTERACTIONS INVOLVED IN CARDIAC TENSION DEVELOPMENT (Q4655545) (← links)
- Modeling Cardiac Mechanics on a Sub-Cellular Scale (Q5011335) (← links)
- Modelling Thermo-Electro-Mechanical Effects in Orthotropic Cardiac Tissue (Q5161995) (← links)
- Solvability analysis and numerical approximation of linearized cardiac electromechanics (Q5247101) (← links)
- A comprehensive and biophysically detailed computational model of the whole human heart electromechanics (Q6094646) (← links)
- Computational model of gastric motility with active‐strain electromechanics (Q6153021) (← links)