We describe the large-scale collective behavior of solutions of polar biofilaments and both stationary and mobile crosslinkers. Both mobile and stationary crosslinkers induce filament alignment promoting either polar or nematic order. In addition, mobile crosslinkers, such as clusters of motor proteins, exchange forces and torques among the filaments and render the homogeneous states unstable via filament bundling. We start from a Smoluchowski equation for rigid filaments in solutions, where pairwise crosslink-mediated interactions among the filaments yield translational and rotational currents. The large-scale properties of the system are described in terms of continuum equations for filament and motor densities, polarization and alignment...
Motor proteins drive persistent motion and self-organization of cytoskeletal filaments. However, sta...
Active fluids are far from equilibrium systems, nominally highly dense suspensions of elongated ele...
Motivated by the cytoskeleton of eukaryotic cells, we develop a general framework for describing the...
I use tools and concepts from non-equilibrium statistical physics and polymer physics to describe th...
Using a microscopic model of interacting polar biofilaments and motor proteins, we characterize the ...
Hydrodynamic equations for an isotropic solution of active polar filaments are derived from a micros...
We study the dynamics of an entangled, isotropic solution of polar filaments coupled by molecular mo...
We study the viscoelasticity of an active solution of polar biofilaments and motor proteins. Using a...
The cytoskeleton provides eukaryotic cells with mechanical support and helps them perform their biol...
Publisher: IOP PublishingWe develop a generic hydrodynamic theory of active fluids with several comp...
In active materials, uncoordinated internal stresses lead to emergent long-range flows. An understan...
doi:10.1088/1367-2630/9/11/422 Abstract. We develop a generic hydrodynamic theory of active fluids w...
We present a generic formulation of the continuum elasticity of an isotropic crosslinked active gel....
Hydrodynamic equations for an isotropic solution of active polar filaments are derived from a micros...
This paper studies several issues that emerge naturally in the hydrodynamic approach to suspensions ...
Motor proteins drive persistent motion and self-organization of cytoskeletal filaments. However, sta...
Active fluids are far from equilibrium systems, nominally highly dense suspensions of elongated ele...
Motivated by the cytoskeleton of eukaryotic cells, we develop a general framework for describing the...
I use tools and concepts from non-equilibrium statistical physics and polymer physics to describe th...
Using a microscopic model of interacting polar biofilaments and motor proteins, we characterize the ...
Hydrodynamic equations for an isotropic solution of active polar filaments are derived from a micros...
We study the dynamics of an entangled, isotropic solution of polar filaments coupled by molecular mo...
We study the viscoelasticity of an active solution of polar biofilaments and motor proteins. Using a...
The cytoskeleton provides eukaryotic cells with mechanical support and helps them perform their biol...
Publisher: IOP PublishingWe develop a generic hydrodynamic theory of active fluids with several comp...
In active materials, uncoordinated internal stresses lead to emergent long-range flows. An understan...
doi:10.1088/1367-2630/9/11/422 Abstract. We develop a generic hydrodynamic theory of active fluids w...
We present a generic formulation of the continuum elasticity of an isotropic crosslinked active gel....
Hydrodynamic equations for an isotropic solution of active polar filaments are derived from a micros...
This paper studies several issues that emerge naturally in the hydrodynamic approach to suspensions ...
Motor proteins drive persistent motion and self-organization of cytoskeletal filaments. However, sta...
Active fluids are far from equilibrium systems, nominally highly dense suspensions of elongated ele...
Motivated by the cytoskeleton of eukaryotic cells, we develop a general framework for describing the...