The self-propulsion of unicellular algae in still ambient fluid is studied using a previously reported laser-based tracking method, supplemented by new tracking software. A few hundred swimming cells are observed simultaneously and the average parameters of the cells' motility are calculated. The time-dependent, two-dimensional distribution of swimming velocities is measured and the three-dimensional distribution is recovered by assuming horizontal isotropy. The mean and variance of the cell turning angle are quantified, to estimate the reorientation time and rotational diffusivity of the bottom-heavy cell. The cells' phototactic and photokinetic responses to the laser light are evaluated. The results are generally consistent both with earl...
At the macroscopic level and in the absence of interacting chemical gradients, the motility of a pop...
Quasi-elastic light scattering and cinematographical techniques were used to investigate the motilit...
International audienceWe present a fast, high-throughput method for characterizing the motility of m...
The self-propulsion of unicellular algae in still ambient fluid is studied using a previously report...
Understanding the swimming characteristics of micro-organisms is significant for modelling the migra...
Single cells exhibit a diverse array of swimming strategies at low Reynolds number to search for nut...
The marine dinoflagellate Cochlodinium polykrikoides is a harmful and highly motile algal species. T...
MasterMicrobial cells are easily found in geometrically confined environments. The swimming characte...
Algae cells can be considered as microrobots from the perspective of engineering. These organisms no...
International audienceSwimming at a micrometer scale demands particular strategies. Indeed when iner...
Swimming is a fundamental trait of many protists and optimizes growth and survival. We present an ea...
A method for automatically counting and measuring sizes and motility behavior of zooplankton and phy...
Measurements of Euglena gracilis motion parameters have been performed by the spectral analysis of t...
The distributed propulsive forces exerted on the flagellum of the swimming alga Chlamydomonas reinha...
The movement trajectories of organisms serve as dynamic read-outs of their behaviour and physiology....
At the macroscopic level and in the absence of interacting chemical gradients, the motility of a pop...
Quasi-elastic light scattering and cinematographical techniques were used to investigate the motilit...
International audienceWe present a fast, high-throughput method for characterizing the motility of m...
The self-propulsion of unicellular algae in still ambient fluid is studied using a previously report...
Understanding the swimming characteristics of micro-organisms is significant for modelling the migra...
Single cells exhibit a diverse array of swimming strategies at low Reynolds number to search for nut...
The marine dinoflagellate Cochlodinium polykrikoides is a harmful and highly motile algal species. T...
MasterMicrobial cells are easily found in geometrically confined environments. The swimming characte...
Algae cells can be considered as microrobots from the perspective of engineering. These organisms no...
International audienceSwimming at a micrometer scale demands particular strategies. Indeed when iner...
Swimming is a fundamental trait of many protists and optimizes growth and survival. We present an ea...
A method for automatically counting and measuring sizes and motility behavior of zooplankton and phy...
Measurements of Euglena gracilis motion parameters have been performed by the spectral analysis of t...
The distributed propulsive forces exerted on the flagellum of the swimming alga Chlamydomonas reinha...
The movement trajectories of organisms serve as dynamic read-outs of their behaviour and physiology....
At the macroscopic level and in the absence of interacting chemical gradients, the motility of a pop...
Quasi-elastic light scattering and cinematographical techniques were used to investigate the motilit...
International audienceWe present a fast, high-throughput method for characterizing the motility of m...