We propose a model for the dynamics of a probe embedded in a living cell, where both thermal fluctuations and nonequilibrium activity coexist. The model is based on a confining harmonic potential describing the elastic cytoskeletal matrix, which undergoes random active hops as a result of the nonequilibrium rearrangements within the cell. We describe the probe's statistics and we bring forth quantities affected by the nonequilibrium activity. We find an excellent agreement between the predictions of our model and experimental results for tracers inside living cells. Finally, we exploit our model to arrive at quantitative predictions for the parameters characterizing nonequilibrium activity, such as the typical time scale of the activity and...
Many biological systems are appropriately viewed as passive inclusions immersed in an active bath: f...
We describe a model of the mechanical properties of the cell plasma membrane using a finite-temperat...
Myosin motor proteins drive vigorous steady-state fluctuations in the actin cytoskeleton of cells. E...
peer reviewedWe propose a model for the dynamics of a probe embedded in a living cell, where both th...
The nonequilibrium activity taking place in a living cell can be monitored with a tracer embedded in...
We derive a new fluctuation-dissipation relation for non-equilibrium systems with long-term memory. ...
peer reviewedThe internal dynamics of active gels both in artificial (in vitro) model systems and in...
peer reviewedLiving organisms are inherently out-of-equilibrium systems. We employ recent developmen...
Particle tracking of microbeads attached to the cytoskeleton (CSK) reveals an intermittent dynamic. ...
Biological activity gives rise to nonequilibrium fluctuations in the cytoplasm of cells; however, th...
Inspired by recent experiments on the dynamics of particles and polymers in artificial cytoskeletons...
Understanding how fluctuations continuously propagate across spatial scales is fundamental for our u...
Soft-condensed matter physics has provided, in the past decades, many of the relevant concepts and m...
AbstractActive fluctuations, driven by processes that consume ATP, are prevalent in living cells and...
While it is commonly observed that the shape dynamics of mammalian cells can undergo large random fl...
Many biological systems are appropriately viewed as passive inclusions immersed in an active bath: f...
We describe a model of the mechanical properties of the cell plasma membrane using a finite-temperat...
Myosin motor proteins drive vigorous steady-state fluctuations in the actin cytoskeleton of cells. E...
peer reviewedWe propose a model for the dynamics of a probe embedded in a living cell, where both th...
The nonequilibrium activity taking place in a living cell can be monitored with a tracer embedded in...
We derive a new fluctuation-dissipation relation for non-equilibrium systems with long-term memory. ...
peer reviewedThe internal dynamics of active gels both in artificial (in vitro) model systems and in...
peer reviewedLiving organisms are inherently out-of-equilibrium systems. We employ recent developmen...
Particle tracking of microbeads attached to the cytoskeleton (CSK) reveals an intermittent dynamic. ...
Biological activity gives rise to nonequilibrium fluctuations in the cytoplasm of cells; however, th...
Inspired by recent experiments on the dynamics of particles and polymers in artificial cytoskeletons...
Understanding how fluctuations continuously propagate across spatial scales is fundamental for our u...
Soft-condensed matter physics has provided, in the past decades, many of the relevant concepts and m...
AbstractActive fluctuations, driven by processes that consume ATP, are prevalent in living cells and...
While it is commonly observed that the shape dynamics of mammalian cells can undergo large random fl...
Many biological systems are appropriately viewed as passive inclusions immersed in an active bath: f...
We describe a model of the mechanical properties of the cell plasma membrane using a finite-temperat...
Myosin motor proteins drive vigorous steady-state fluctuations in the actin cytoskeleton of cells. E...