Utilising Onsager's variational formulation, we derive dynamical equations for the relaxation of a fluid membrane tube in the limit of small deformation, allowing for a contrast of solvent viscosity across the membrane and variations in surface tension due to membrane incompressibility. We compute the relaxation rates, recovering known results in the case of purely axis-symmetric perturbations and making new predictions for higher order (azimuthal) $m$-modes. We analyse the long and short wavelength limits of these modes by making use of various asymptotic arguments. We incorporate stochastic terms to our dynamical equations suitable to describe both passive thermal forces and non-equilibrium active forces. We derive expressions for the flu...
The time correlation function of the shape fluctuations of large (greater than 10 micron), cylindric...
One of the most promising features of active systems is that they can extract energy from their envi...
We analyze the stability of biological membrane tubes, with and without a base flow of lipids. Membr...
We present a detailed analysis of the micropipet experiments recently reported by J-B. Manneville et...
We present a simple model to study the statistical fluctuations of membranes containing active prote...
Membrane tubes are structures ubiquitous in cells, and understanding their dynamics and morphology i...
We study the comparative importance of thermal to nonthermal fluctuations for membrane-based models ...
PACS. 87.16.-b – Subcellular structure and processes. PACS. 05.40.-a – Fluctuation phenomena, random...
We study a membrane tube with unidirectional ion pumps driving an osmotic pressure difference. A pre...
Soft-condensed matter physics has provided, in the past decades, many of the relevant concepts and m...
Les tubes membranaires sont des structures omniprésentes dans les cellules, et la compréhension de l...
The time correlation function of the fluctuations in shape of large ( ≽ 10 μm) quasi-spherical hydra...
cette thèse porte sur les membranes biologiques, étudiées du point de vue de la physique théorique. ...
Les membranes lipidiques constituent des matériaux très particuliers: d'une part, elles sont très pe...
International audienceTwo different tensions can be defined for a fluid membrane: the internal tensi...
The time correlation function of the shape fluctuations of large (greater than 10 micron), cylindric...
One of the most promising features of active systems is that they can extract energy from their envi...
We analyze the stability of biological membrane tubes, with and without a base flow of lipids. Membr...
We present a detailed analysis of the micropipet experiments recently reported by J-B. Manneville et...
We present a simple model to study the statistical fluctuations of membranes containing active prote...
Membrane tubes are structures ubiquitous in cells, and understanding their dynamics and morphology i...
We study the comparative importance of thermal to nonthermal fluctuations for membrane-based models ...
PACS. 87.16.-b – Subcellular structure and processes. PACS. 05.40.-a – Fluctuation phenomena, random...
We study a membrane tube with unidirectional ion pumps driving an osmotic pressure difference. A pre...
Soft-condensed matter physics has provided, in the past decades, many of the relevant concepts and m...
Les tubes membranaires sont des structures omniprésentes dans les cellules, et la compréhension de l...
The time correlation function of the fluctuations in shape of large ( ≽ 10 μm) quasi-spherical hydra...
cette thèse porte sur les membranes biologiques, étudiées du point de vue de la physique théorique. ...
Les membranes lipidiques constituent des matériaux très particuliers: d'une part, elles sont très pe...
International audienceTwo different tensions can be defined for a fluid membrane: the internal tensi...
The time correlation function of the shape fluctuations of large (greater than 10 micron), cylindric...
One of the most promising features of active systems is that they can extract energy from their envi...
We analyze the stability of biological membrane tubes, with and without a base flow of lipids. Membr...