peer reviewedLiving organisms are inherently out-of-equilibrium systems. We employ recent developments in stochastic energetics and rely on a minimal microscopic model to predict the amount of mechanical energy dissipated by such dynamics. Our model includes complex rheological effects and nonequilibrium stochastic forces. By performing active microrheology and tracking micronsized vesicles in the cytoplasm of living oocytes, we provide unprecedented measurements of the spectrum of dissipated energy. We show that our model is fully consistent with the experimental data and we use it to offer predictions for the injection and dissipation energy scales involved in active fluctuations. Copyright (C) EPLA, 201
Living systems operate far from thermodynamic equilibrium. Enzymatic activity can induce broken deta...
Understanding how fluctuations continuously propagate across spatial scales is fundamental for our u...
Systems in thermodynamic equilibrium are not only characterized by time-independent macroscopic prop...
peer reviewedLiving organisms are inherently out-of-equilibrium systems. We employ recent developmen...
peer reviewedWe propose a model for the dynamics of a probe embedded in a living cell, where both th...
Thermodynamic equilibrium is a strong constraint on the statistics of physical systems that has led ...
The nonequilibrium activity taking place in a living cell can be monitored with a tracer embedded in...
Restricted Access.We review recent work on the physical properties of model fluid membranes in noneq...
Active diffusion of intracellular components is emerging as an important process in cell biology. Th...
AbstractA living cell deforms or flows in response to mechanical stresses. A recent report shows tha...
We derive a new fluctuation-dissipation relation for non-equilibrium systems with long-term memory. ...
Living systems, as well as most physical systems with promise in industry, technology and medicine, ...
Soft-condensed matter physics has provided, in the past decades, many of the relevant concepts and m...
International audienceRed blood cells, or erythrocytes, are seen to flicker under optical microscopy...
Quantitatively measuring the mechanical properties of soft matter over a wide range of length and ti...
Living systems operate far from thermodynamic equilibrium. Enzymatic activity can induce broken deta...
Understanding how fluctuations continuously propagate across spatial scales is fundamental for our u...
Systems in thermodynamic equilibrium are not only characterized by time-independent macroscopic prop...
peer reviewedLiving organisms are inherently out-of-equilibrium systems. We employ recent developmen...
peer reviewedWe propose a model for the dynamics of a probe embedded in a living cell, where both th...
Thermodynamic equilibrium is a strong constraint on the statistics of physical systems that has led ...
The nonequilibrium activity taking place in a living cell can be monitored with a tracer embedded in...
Restricted Access.We review recent work on the physical properties of model fluid membranes in noneq...
Active diffusion of intracellular components is emerging as an important process in cell biology. Th...
AbstractA living cell deforms or flows in response to mechanical stresses. A recent report shows tha...
We derive a new fluctuation-dissipation relation for non-equilibrium systems with long-term memory. ...
Living systems, as well as most physical systems with promise in industry, technology and medicine, ...
Soft-condensed matter physics has provided, in the past decades, many of the relevant concepts and m...
International audienceRed blood cells, or erythrocytes, are seen to flicker under optical microscopy...
Quantitatively measuring the mechanical properties of soft matter over a wide range of length and ti...
Living systems operate far from thermodynamic equilibrium. Enzymatic activity can induce broken deta...
Understanding how fluctuations continuously propagate across spatial scales is fundamental for our u...
Systems in thermodynamic equilibrium are not only characterized by time-independent macroscopic prop...