The interior of a living cell is a crowded, heterogenuous, fluctuating environment. Hence, a major challenge in modeling intracellular transport is to analyze stochastic processes within complex environments. Broadly speaking, there are two basic mechanisms for intracellular transport: passive diffusion and motor-driven active transport. Diffusive transport can be formulated in terms of the motion of an over-damped Brownian particle. On the other hand, active transport requires chemical energy, usually in the form of ATP hydrolysis, and can be direction specific, allowing biomolecules to be transported long distances; this is particularly important in neurons due to their complex geometry. In this review we present a wide range of analytica...
The efficiency of intracellular cargo transport from specific source to target locations is strongly...
AbstractThe transduction of signals depends on the translocation of signaling molecules to specific ...
AbstractIntracellular transport is essential for maintaining proper cellular function in most eukary...
The interior of a living cell is a crowded, heterogenuous, fluctuating environment. Hence, a major c...
We present an overview of diffusion models commonly used for quantifying the dynamics of intracellul...
AbstractThe crowded intracellular environment poses a formidable challenge to experimental and theor...
This thesis uses methods and models from non-equilibrium statistical physics to describe intracellul...
Irregularities in intracellular traffic in axons caused by mutations of molecular motors may lead to...
Diffusion of macromolecules within the intracellular environment, tissue generation in scaffolds, an...
AbstractOne-dimensional models are presented for the macroscopic intracellular transport of vesicles...
This thesis uses methods and models from non-equilibrium statistical physics to describe intracellul...
Intracellular transport in eukaryotic cells is a process in which cargo, carrying various materials ...
All substances exhibit constant random motion at the microscopic scale. This is a direct consequence...
In this thesis, I discuss two main subjects coming from biology and I propose two models that mimic ...
Successful cellular function and organ development rely on the effective transport of proteins and o...
The efficiency of intracellular cargo transport from specific source to target locations is strongly...
AbstractThe transduction of signals depends on the translocation of signaling molecules to specific ...
AbstractIntracellular transport is essential for maintaining proper cellular function in most eukary...
The interior of a living cell is a crowded, heterogenuous, fluctuating environment. Hence, a major c...
We present an overview of diffusion models commonly used for quantifying the dynamics of intracellul...
AbstractThe crowded intracellular environment poses a formidable challenge to experimental and theor...
This thesis uses methods and models from non-equilibrium statistical physics to describe intracellul...
Irregularities in intracellular traffic in axons caused by mutations of molecular motors may lead to...
Diffusion of macromolecules within the intracellular environment, tissue generation in scaffolds, an...
AbstractOne-dimensional models are presented for the macroscopic intracellular transport of vesicles...
This thesis uses methods and models from non-equilibrium statistical physics to describe intracellul...
Intracellular transport in eukaryotic cells is a process in which cargo, carrying various materials ...
All substances exhibit constant random motion at the microscopic scale. This is a direct consequence...
In this thesis, I discuss two main subjects coming from biology and I propose two models that mimic ...
Successful cellular function and organ development rely on the effective transport of proteins and o...
The efficiency of intracellular cargo transport from specific source to target locations is strongly...
AbstractThe transduction of signals depends on the translocation of signaling molecules to specific ...
AbstractIntracellular transport is essential for maintaining proper cellular function in most eukary...