A computational model of intussusceptive microvascular growth and remodeling
From MaRDI portal
Publication:1628945
DOI10.1016/j.jtbi.2009.09.018zbMath1403.92033OpenAlexW2098316500WikidataQ84573776 ScholiaQ84573776MaRDI QIDQ1628945
Gabor Szekely, Dominik Szczerba, Haymo Kurz
Publication date: 11 December 2018
Published in: Journal of Theoretical Biology (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.jtbi.2009.09.018
level set methodcomputational fluid dynamicsfluid-structure interactionmultiphysics simulationendotheliumvessel wallangiopoietinbifurcation formationcapillary growthintussusceptive angiogenesispericyte
Related Items (3)
A hybrid discrete-continuum mathematical model of pattern prediction in the developing retinal vasculature ⋮ Coupled modelling of tumour angiogenesis, tumour growth and blood perfusion ⋮ A review of mathematical models for the formation of vascular networks
Uses Software
Cites Work
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Mathematical modelling of flow through vascular networks: implications for tumour-induced angiogenesis and chemotherapy strategies
- Solution of transport equations on unstructured meshes with cell-centered colocated variables. I: Discretization
- Continuous and discrete mathematical models of tumor-induced angiogenesis
- A cellular automaton model for tumour growth in inhomogeneous environment
- Critical conditions for pattern formation and in vitro tubulogenesis driven by cellular traction fields
- Computational model of flow-tissue interactions in intussusceptive angiogenesis
- Mathematical modelling of dynamic adaptive tumour-induced angiogenesis: clinical implications and therapeutic targeting strategies
- Vascular network remodeling via vessel cooption, regression and growth in tumors
- A Multiphysics Model of Capillary Growth and Remodeling
- A Review of Vasculogenesis Models
This page was built for publication: A computational model of intussusceptive microvascular growth and remodeling