Hydrodynamic equations for an isotropic solution of active polar filaments are derived from a microscopic mean-field model of the forces exchanged between motors and filaments. We find that a spatial dependence of the motor stepping rate along the filament is essential to drive bundle formation. A number of differences arise as compared to hydrodynamics derived (earlier) from a mesoscopic model where relative filament velocities were obtained on the basis of symmetry considerations. Due to the anisotropy of filament diffusion, motors are capable of generating net filament motion relative to the solvent. The effect of this new term on the stability of the homogeneous state is investigated
We study the active dynamics of single and interacting cytoskeletal filaments in motility assays, i...
The actin cortex is an important part of the motile machinery of a eucaryotic cell. The cortex is st...
AbstractSeveral intracellular processes are governed by two different species of molecular motors, f...
Hydrodynamic equations for an isotropic solution of active polar filaments are derived from a micros...
Using a microscopic model of interacting polar biofilaments and motor proteins, we characterize the ...
We describe the large-scale collective behavior of solutions of polar biofilaments and both stationa...
In this study we consider the density of motor proteins in filament bundles with polarity graded in ...
Abstract. We study molecular motor-induced microtubule self-organization in dilute and semi-dilute f...
We study molecular motor-induced microtubule self-organization in dilute and semi-dilute f...
I use tools and concepts from non-equilibrium statistical physics and polymer physics to describe th...
In the presence of adenosine triphosphate, molecular motors generate active force dipoles that drive...
Motivated by the cytoskeleton of eukaryotic cells, we develop a general framework for describing the...
We develop a simple lattice model to describe the hydrodynamic influence of active mass transport al...
We study the dynamics of an entangled, isotropic solution of polar filaments coupled by molecular mo...
Motor proteins drive persistent motion and self-organization of cytoskeletal filaments. However, sta...
We study the active dynamics of single and interacting cytoskeletal filaments in motility assays, i...
The actin cortex is an important part of the motile machinery of a eucaryotic cell. The cortex is st...
AbstractSeveral intracellular processes are governed by two different species of molecular motors, f...
Hydrodynamic equations for an isotropic solution of active polar filaments are derived from a micros...
Using a microscopic model of interacting polar biofilaments and motor proteins, we characterize the ...
We describe the large-scale collective behavior of solutions of polar biofilaments and both stationa...
In this study we consider the density of motor proteins in filament bundles with polarity graded in ...
Abstract. We study molecular motor-induced microtubule self-organization in dilute and semi-dilute f...
We study molecular motor-induced microtubule self-organization in dilute and semi-dilute f...
I use tools and concepts from non-equilibrium statistical physics and polymer physics to describe th...
In the presence of adenosine triphosphate, molecular motors generate active force dipoles that drive...
Motivated by the cytoskeleton of eukaryotic cells, we develop a general framework for describing the...
We develop a simple lattice model to describe the hydrodynamic influence of active mass transport al...
We study the dynamics of an entangled, isotropic solution of polar filaments coupled by molecular mo...
Motor proteins drive persistent motion and self-organization of cytoskeletal filaments. However, sta...
We study the active dynamics of single and interacting cytoskeletal filaments in motility assays, i...
The actin cortex is an important part of the motile machinery of a eucaryotic cell. The cortex is st...
AbstractSeveral intracellular processes are governed by two different species of molecular motors, f...