Pages that link to "Item:Q2284910"
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The following pages link to Derivation of cable equation by multiscale analysis for a model of myelinated axons (Q2284910):
Displaying 15 items.
- Well-posedness for a modified bidomain model describing bioelectric activity in damaged heart tissues (Q821522) (← links)
- Homogenization of a modified bidomain model involving imperfect transmission (Q2032118) (← links)
- Homogenization of a \(2\)D two-component domain with an oscillating thick interface (Q2099352) (← links)
- Derivation of a bidomain model for bundles of myelinated axons (Q2112606) (← links)
- Homogenization of the diffusion equation with a singular potential for a model of a biological cell network (Q2211242) (← links)
- Reduced order models of myelinated axonal compartments (Q2281014) (← links)
- Modelling in vivo action potential propagation along a giant axon (Q2512931) (← links)
- An Overview on Steffensen-Type Methods (Q2832948) (← links)
- Cable equation for the depolarization of action potential along the axon of the neuron (nerve), its solution and analysis (Q2906601) (← links)
- A multiscale approach to modelling electrochemical processes occurring across the cell membrane with application to transmission of action potentials (Q3182286) (← links)
- (Q3751420) (← links)
- (Q4806348) (← links)
- Multiscale Analysis of Myelinated Axons (Q5860624) (← links)
- Upscaling of a double porosity problem with jumps in thin porous media (Q5865363) (← links)
- Neuronal cable equations derived from the hydrodynamic motion of charged particles (Q6102383) (← links)