Fellner, M., & Jüngel, A. (2024). Existence analysis of a cross-diffusion system with nonlinear Robin boundary conditions for vesicle transport in neurites. Nonlinear Analysis, 241, Article 113494. https://doi.org/10.1016/j.na.2024.113494
Cross-diffusion equations; Existence analysis; Neurite growth; Nonlinear robin boundary conditions; Vesicle transport
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Abstract:
A one-dimensional cross-diffusion system modeling the transport of vesicles in neurites is analyzed. The equations are coupled via nonlinear Robin boundary conditions to ordinary differential equations for the number of vesicles in the reservoirs in the cell body and the growth cone at the end of the neurite. The existence of bounded weak solutions is proved by using the boundedness-by-entropy method. Numerical simulations show the dynamical behavior of the concentrations of anterograde and retrograde vesicles in the neurite.
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Project title:
Multikomponentensysteme mit unvollständiger Diffusion: P 33010-N (FWF - Österr. Wissenschaftsfonds) Emergente Netzwerkstrukturen und neuromorphische Anwendungen: 101018153 (European Commission)