Transport through crowded environments is often classified as anomalous, rather than classical, Fickian diffusion. Several studies have sought to describe such transport processes using either a continuous time random walk or fractional order differential equation. For both these models the transport is characterized by a parameter α, where α = 1 is associated with Fickian diffusion and α < 1 is associated with anomalous subdiffusion. Here, we simulate a single agent migrating through a crowded environment populated by impenetrable, immobile obstacles and estimate α from mean squared displacement data. We also simulate the transport of a population of such agents through a similar crowded environment and match averaged agent density profile...
The motion of cells and molecules through biological environments is often hindered by the presence ...
Features inside the living cell are complex and crowded; in such complex environments diffusion proc...
Abstract. In the spirit of the macroscopic crowd motion models with hard congestion (i.e. a strong d...
Transport through crowded environments is often classified as anomalous, rather than classical, Fick...
Many biological environments are crowded by macromolecules, organelles and cells which can impede th...
Many biological environments are crowded by macromolecules, organelles and cells which can impede th...
Many biological environments are crowded by macromolecules, organelles and cells which can impede th...
Transport through biological environments that are densely crowded with obstacles is often classifie...
Transport through biological environments that are densely crowded with obstacles is often classifie...
The motion of cells and molecules through biological environments is often hindered by the presence ...
Random walk models are often used to interpret experimental observations of the motion of biological...
The motion of cells and molecules through biological environments is often hindered by the presence ...
The motion of cells and molecules through biological environments is often hindered by the presence ...
Random walk models are often used to interpret experimental observations of the motion of biological...
The diffusion type is determined not only by microscopic dynamics but also by the environment proper...
The motion of cells and molecules through biological environments is often hindered by the presence ...
Features inside the living cell are complex and crowded; in such complex environments diffusion proc...
Abstract. In the spirit of the macroscopic crowd motion models with hard congestion (i.e. a strong d...
Transport through crowded environments is often classified as anomalous, rather than classical, Fick...
Many biological environments are crowded by macromolecules, organelles and cells which can impede th...
Many biological environments are crowded by macromolecules, organelles and cells which can impede th...
Many biological environments are crowded by macromolecules, organelles and cells which can impede th...
Transport through biological environments that are densely crowded with obstacles is often classifie...
Transport through biological environments that are densely crowded with obstacles is often classifie...
The motion of cells and molecules through biological environments is often hindered by the presence ...
Random walk models are often used to interpret experimental observations of the motion of biological...
The motion of cells and molecules through biological environments is often hindered by the presence ...
The motion of cells and molecules through biological environments is often hindered by the presence ...
Random walk models are often used to interpret experimental observations of the motion of biological...
The diffusion type is determined not only by microscopic dynamics but also by the environment proper...
The motion of cells and molecules through biological environments is often hindered by the presence ...
Features inside the living cell are complex and crowded; in such complex environments diffusion proc...
Abstract. In the spirit of the macroscopic crowd motion models with hard congestion (i.e. a strong d...