The mathematics of mechanobiology and cell signaling. Abstracts from the workshop held February 25--March 3, 2018
DOI10.4171/OWR/2018/8zbMath1409.00061WikidataQ128638393 ScholiaQ128638393MaRDI QIDQ1731976
No author found.
Publication date: 15 March 2019
Published in: Oberwolfach Reports (Search for Journal in Brave)
Proceedings of conferences of miscellaneous specific interest (00B25) PDEs in connection with biology, chemistry and other natural sciences (35Q92) Collections of abstracts of lectures (00B05) Biomechanics (92C10) Biomechanical solid mechanics (74L15) Developmental biology, pattern formation (92C15) Cell biology (92C37) Proceedings, conferences, collections, etc. pertaining to biology (92-06)
Uses Software
Cites Work
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- State space truncation with quantified errors for accurate solutions to discrete chemical master equation
- The mathematics and mechanics of biological growth
- A stable numerical method for the dynamics of fluidic membranes
- Nonconvex mean curvature flow as a formal singular limit of the nonlinear bidomain model
- Triggered fronts in the complex Ginzburg Landau equation
- Criteria for pointwise growth and their role in invasion processes
- Glioma follow white matter tracts: a multiscale DTI-based model
- The impact of microfibril orientations on the biomechanics of plant cell walls and tissues
- Restricted diffusion in cellular media: \((1+1)\)-dimensional model
- Dissecting the dynamics of epigenetic changes in phenotype-structured populations exposed to fluctuating environments
- \(M^5\) mesoscopic and macroscopic models for mesenchymal motion
- Existence of homoenergetic affine flows for the Boltzmann equation
- On selection dynamics for continuous structured populations
- A user's guide to PDE models for chemotaxis
- Limit theorems for large deviations and reaction-diffusion equations
- Mutation, selection, and recombination in a model of phenotype evolution
- On the asymptotic behaviour of anisotropic energies arising in the cardiac bidomain model
- How nucleus mechanics and ECM microstructure influence the invasion of single cells and multicellular aggregates
- Phase separation patterns from directional quenching
- Stochastic effects and bistability in T cell receptor signaling
- A cellular Potts model simulating cell migration on and in matrix environments
- A complete analysis of a classical Poisson-Nernst-Planck model for ionic flow
- Time fluctuations in a population model of adaptive dynamics
- Mathematical modelling of glioma growth: the use of diffusion tensor imaging (DTI) data to predict the anisotropic pathways of cancer invasion
- Optimal transport for applied mathematicians. Calculus of variations, PDEs, and modeling
- Hopf bifurcation from fronts in the Cahn-Hilliard equation
- Asymptotic stability of equilibria of selection-mutation equations
- One-dimensional steady-state Poisson-Nernst-Planck systems for ion channels with multiple ion species
- Wavenumber selection in coupled transport equations
- Actomyosin contraction, aggregation and traveling waves in a treadmilling actin array
- Mathematical cardiac electrophysiology
- Existence and meta-stability of steady states of a model for chemotaxis
- Patient-specific mathematical neuro-oncology: using a simple proliferation and invasion tumor model to inform clinical practice
- The dynamics of adaptation: An illuminating example and a Hamilton--Jacobi approach
- Modeling and analysis of early events in T-lymphocyte antigen-activated intracellular-signalling pathways
- Homogenization of a system of elastic and reaction-diffusion equations modelling plant cell wall biomechanics
- Pattern formation in the wake of triggered pushed fronts
- Stability of Front Solutions of the Bidomain Equation
- Poisson--Nernst--Planck Systems for Ion Flow with a Local Hard-Sphere Potential for Ion Size Effects
- Finite element approximation for the dynamics of fluidic two-phase biomembranes
- Characterizing the Effect of Boundary Conditions on Striped Phases
- Singular perturbation analysis of the steady-state Poisson–Nernst–Planck system: Applications to ion channels
- A Poisson–Nernst–Planck Model for Biological Ion Channels—An Asymptotic Analysis in a Three-Dimensional Narrow Funnel
- Dirac concentrations in Lotka-Volterra parabolic PDEs
- Mathematical modelling of the atherosclerotic plaque formation
- Stationary Solutions of Chemotaxis Systems
- Lyapunov functions and Lp-estimates for a class of reaction-diffusion systems
- Pattern‐forming fronts in a Swift–Hohenberg equation with directional quenching — parallel and oblique stripes
- How to characterize a nonlinear elastic material? A review on nonlinear constitutive parameters in isotropic finite elasticity
- Modeling adhesion-independent cell migration
- Derivation and Application of Effective Interface Conditions for Continuum Mechanical Models of Cell Invasion through Thin Membranes
- Reversal permanent charge and reversal potential: case studies via classical Poisson–Nernst–Planck models
- Shear flow of a granular material
This page was built for publication: The mathematics of mechanobiology and cell signaling. Abstracts from the workshop held February 25--March 3, 2018