Active matter systems such as eukaryotic cells and bacteria continuously transform chemical energy to motion. Hence living systems exert active stresses on the complex environments in which they reside. One recurring aspect of this complexity is the viscoelasticity of the medium surrounding living systems: bacteria secrete their own viscoelastic extracellular matrix, and cells constantly deform, proliferate, and self-propel within viscoelastic networks of collagen. It is therefore imperative to understand how active matter modifies, and gets modified by, viscoelastic fluids. Here, we present a two-phase model of active nematic matter that dynamically interacts with a passive viscoelastic polymeric phase and perform numerical simulations in ...
Active matter extracts energy from its surroundings at the single particle level and transforms it i...
Active matter extracts energy from its surroundings at the single particle level and transforms it i...
We study the dynamics of an ideal polymer chain in a viscoelastic medium and in the presence of acti...
Active matter systems such as eukaryotic cells and bacteria continuously transform chemical energy t...
Continuum models of active nematic gels have proved successful to describe a number of biological sy...
A paradigm for internally driven matter is the active nematic liquid crystal, whereby the equations ...
A paradigm for internally driven matter is the active nematic liquid crystal, whereby the equations ...
We consider a continuum model of active viscoelastic matter, whereby an active nematic liquid crysta...
Complex interactions between cellular systems and their surrounding extracellular matrices are emerg...
Models of active nematics in biological systems normally require complexity arising from the hydrody...
Active matter is based on understanding the physical mechanisms that give rise to large scale flows ...
Thermal and viscous forces compete for dominance at the microscopic length-scales which govern the b...
Within cells, the cytoskeleton organizes into polymer networks with unique properties. At short time...
Within cells, the cytoskeleton organizes into polymer networks with unique properties. At short time...
Within cells, the cytoskeleton organizes into polymer networks with unique properties. At short tim...
Active matter extracts energy from its surroundings at the single particle level and transforms it i...
Active matter extracts energy from its surroundings at the single particle level and transforms it i...
We study the dynamics of an ideal polymer chain in a viscoelastic medium and in the presence of acti...
Active matter systems such as eukaryotic cells and bacteria continuously transform chemical energy t...
Continuum models of active nematic gels have proved successful to describe a number of biological sy...
A paradigm for internally driven matter is the active nematic liquid crystal, whereby the equations ...
A paradigm for internally driven matter is the active nematic liquid crystal, whereby the equations ...
We consider a continuum model of active viscoelastic matter, whereby an active nematic liquid crysta...
Complex interactions between cellular systems and their surrounding extracellular matrices are emerg...
Models of active nematics in biological systems normally require complexity arising from the hydrody...
Active matter is based on understanding the physical mechanisms that give rise to large scale flows ...
Thermal and viscous forces compete for dominance at the microscopic length-scales which govern the b...
Within cells, the cytoskeleton organizes into polymer networks with unique properties. At short time...
Within cells, the cytoskeleton organizes into polymer networks with unique properties. At short time...
Within cells, the cytoskeleton organizes into polymer networks with unique properties. At short tim...
Active matter extracts energy from its surroundings at the single particle level and transforms it i...
Active matter extracts energy from its surroundings at the single particle level and transforms it i...
We study the dynamics of an ideal polymer chain in a viscoelastic medium and in the presence of acti...