Modeling the spatiotemporal intracellular calcium dynamics in nerve cell with strong memory effects
From MaRDI portal
Publication:6061272
DOI10.1515/ijnsns-2020-0254OpenAlexW3193433153MaRDI QIDQ6061272
Hardik Joshi, Brajesh Kumar Jha
Publication date: 7 December 2023
Published in: International Journal of Nonlinear Sciences and Numerical Simulation (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1515/ijnsns-2020-0254
finite element methodfractional derivativefractional diffusion equationcalciumcalcium concentrationnerve cells
Cites Work
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- High-order finite element methods for time-fractional partial differential equations
- Mathematical physiology. II: Systems physiology
- The analysis of fractional differential equations. An application-oriented exposition using differential operators of Caputo type
- The fractional diffusion model with an absorption term and modified Fick's law for non-local transport processes
- Spatio-temporal modelling explains the effect of reduced plasma membrane Ca\(^{2+}\) efflux on intracellular Ca\(^{2+}\) oscillations in hepatocytes
- A new fractional SIRS-SI malaria disease model with application of vaccines, antimalarial drugs, and spraying
- Chaotic dynamics of a fractional order HIV-1 model involving AIDS-related cancer cells
- New approaches to the fractional dynamics of schistosomiasis disease model
- Fractional-order mathematical model for calcium distribution in nerve cells
- Memory in a fractional-order cardiomyocyte model alters voltage- and calcium-mediated instabilities
- A deep energy method for finite deformation hyperelasticity
- Contribution of calcium fluxes to astrocyte spontaneous calcium oscillations in deterministic and stochastic models
- Unstructured mesh finite difference/finite element method for the 2D time-space Riesz fractional diffusion equation on irregular convex domains
- An energy approach to the solution of partial differential equations in computational mechanics via machine learning: concepts, implementation and applications
- A fast solution technique for finite element discretization of the space-time fractional diffusion equation
- Finite difference/spectral approximations for the time-fractional diffusion equation
- Computational modelling of nonlinear calcium waves
- Finite element method for space-time fractional diffusion equation
- Asymptotic Analysis of Buffered Calcium Diffusion near a Point Source
- Two-dimensional finite element model to study calcium distribution in astrocytes in presence of excess buffer
- Three-Dimensional Finite Element Model to Study Effect of RyR Calcium Channel, ER Leak and SERCA Pump on Calcium Distribution in Oocyte Cell
- Fractionally delineate the neuroprotective function of calbindin-D28k in Parkinson’s disease
- Modeling the mechanics of calcium regulation in T lymphocyte: A finite element method approach
- Two-dimensional finite element model to study unsteady state Ca2+ diffusion in neuron involving ER LEAK and SERCA
- A mathematical fractional model with nonsingular kernel for thrombin receptor activation in calcium signalling
- Numerical Approximation of a Time Dependent, Nonlinear, Space‐Fractional Diffusion Equation
- FRACTIONAL TIME SCALE IN CALCIUM ION CHANNELS MODEL
- Conditioning Analysis of Nonlocal Integral Operators in Fractional Sobolev Spaces
- The fractional Fick's law for non-local transport processes
- Analytical and numerical approaches to nerve impulse model of fractional‐order
This page was built for publication: Modeling the spatiotemporal intracellular calcium dynamics in nerve cell with strong memory effects