Pages that link to "Item:Q527819"
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The following pages link to Boundary integral formulation and semi-implicit scheme coupling for modeling cells under electrical stimulation (Q527819):
Displaying 13 items.
- A numerical method for cellular electrophysiology based on the electrodiffusion equations with internal boundary conditions at membranes (Q1043369) (← links)
- Application of the \(j\)-subgradient in a problem of electropermeabilization (Q1691800) (← links)
- Local multiple traces formulation for electromagnetics: stability and preconditioning for smooth geometries (Q2146333) (← links)
- Derivation of cable equation by multiscale analysis for a model of myelinated axons (Q2284910) (← links)
- An Overview on Steffensen-Type Methods (Q2832948) (← links)
- About the transmembrane voltage potential of a biological cell in time-harmonic regime. (Q3625403) (← links)
- An Integral Equation Solution for the Steady-State Current at a Periodic Array of Surface Microelectrodes (Q4377374) (← links)
- Multiple traces formulation and semi-implicit scheme for modelling biological cells under electrical stimulation (Q4961189) (← links)
- Finite element methods for the electric interface model: Convergence analysis (Q5119034) (← links)
- A Fast Accurate Boundary Integral Method for Potentials on Closely Packed Cells (Q5372166) (← links)
- Multiscale Analysis of Myelinated Axons (Q5860624) (← links)
- Boundary integral formulation of the cell-by-cell model of cardiac electrophysiology (Q6566856) (← links)
- Cell electropermeabilization modeling via multiple traces formulation and time semi-implicit multistep coupling (Q6660353) (← links)