activity
20162023
most citedActive nematic flows on curved surfaces

34 citations · 36 across the 4 of their papers we have counts for

collaborators

6 papers

cond-mat.soft2023

Curvature-induced clustering of cell adhesion proteins

Shao-Zhen Lin, Jacques Prost, Jean-Francois Rupprecht

Cell adhesion proteins typically form stable clusters that anchor the cell membrane to its environment. Several works have suggested that cell membrane protein clusters can emerge…

cond-mat.soft2023★ 1 cited

Tilt-induced clustering of cell adhesion proteins

Shao-Zhen Lin, Rishita Changede, Michael P. Sheetz +2

Cell adhesion proteins are transmembrane proteins that bind cells to their environment. These proteins typically cluster into disk-shaped or linear structures. Here we show that su…

cond-mat.soft2022★ 1 cited

Tissue fluidization by cell-shape-controlled active stresses

Shao-Zhen Lin, Matthias Merkel, Jean-François Rupprecht

Biological cells can actively tune their intracellular architecture according to their overall shape. Here we explore the rheological implication of such coupling in a minimal mode…

physics.bio-ph2022★ 34 cited

Active nematic flows on curved surfaces

Samuel Bell, Shao-Zhen Lin, Jean-François Rupprecht +1

Cell monolayers are a central model system to tissue biophysics. In vivo, epithelial tissues are curved on the scale of microns, and curvature's role in the onset of spontaneous ti…

physics.bio-ph2016

Trade-offs between spatial and temporal resolutions in stochastic super-resolution microscopy techniques

Jean-Francois Rupprecht, Ariadna Martinez-Marrades, Rishita Changede +1

Widefield stochastic microscopy techniques such as PALM or STORM rely on the progressive accumulation of a large number of frames, each containing a scarce number of super-resolved…

cond-mat.stat-mech2016

Optimal search strategies of run-and-tumble walks

Jean-Francois Rupprecht, Olivier Bénichou, Raphael Voituriez

The run-and-tumble walk, consisting in randomly reoriented ballistic excursions, models phenomena ranging from gas kinetics to bacteria motility. We evaluate the mean time required…