Swimming microorganisms often experience complex environments in their natural habitat. The same is true for microswimmers in envisioned biomedical applications. The simple aqueous conditions typically studied in the lab differ strongly from those found in these environments and often exclude the effects of small volume confinement or the influence that external fields have on their motion. In this work, we investigate magnetically steerable microswimmers, specifically magnetotactic bacteria, in strong spatial confinement and under the influence of an external magnetic field. We trap single cells in micrometer-sized microfluidic chambers and track and analyze their motion, which shows a variety of different trajectories, depending on the ch...
In recent years, much effort has been placed on development of microscale devices capable of propuls...
Dense suspensions of magnetotactic bacteria form long, thin, stable bands perpendicular to the commo...
We demonstrate the closed-loop control of a magnetotactic bacterium (MTB), i.e., Magnetospirillum ma...
International audienceSwimming microorganisms often experience complex environments in their natural...
Microswimmers, i.e. swimmers of micron size experiencing low Reynolds numbers, have received a great...
Author summary In this paper, we propose a modified Active Brownian particle model to describe bacte...
International audienceThe movement of microswimmers is often described by active Brownian particle m...
International audienceThe movement of microorganisms is not only an essential aspect of life, it als...
Many theoretical studies of bacterial locomotion adopt a simple model for the organism consisting of...
AbstractThe microaerophilic magnetotactic bacterium Magnetospirillum gryphiswaldense swims along mag...
Understanding the motility behavior of bacteria in confining microenvironments, in which they search...
.We report the work we lead on magneto tactic bacteria, from the point of view of active matter. The...
Despite their importance in many biological, ecological, and physical processes, microorganismal flu...
Bacterial movement in confined spaces is routinely encountered either in a natural environment or in...
An artificial magnetotactic microbot was created by integrating the microalgal cell with magnetic mi...
In recent years, much effort has been placed on development of microscale devices capable of propuls...
Dense suspensions of magnetotactic bacteria form long, thin, stable bands perpendicular to the commo...
We demonstrate the closed-loop control of a magnetotactic bacterium (MTB), i.e., Magnetospirillum ma...
International audienceSwimming microorganisms often experience complex environments in their natural...
Microswimmers, i.e. swimmers of micron size experiencing low Reynolds numbers, have received a great...
Author summary In this paper, we propose a modified Active Brownian particle model to describe bacte...
International audienceThe movement of microswimmers is often described by active Brownian particle m...
International audienceThe movement of microorganisms is not only an essential aspect of life, it als...
Many theoretical studies of bacterial locomotion adopt a simple model for the organism consisting of...
AbstractThe microaerophilic magnetotactic bacterium Magnetospirillum gryphiswaldense swims along mag...
Understanding the motility behavior of bacteria in confining microenvironments, in which they search...
.We report the work we lead on magneto tactic bacteria, from the point of view of active matter. The...
Despite their importance in many biological, ecological, and physical processes, microorganismal flu...
Bacterial movement in confined spaces is routinely encountered either in a natural environment or in...
An artificial magnetotactic microbot was created by integrating the microalgal cell with magnetic mi...
In recent years, much effort has been placed on development of microscale devices capable of propuls...
Dense suspensions of magnetotactic bacteria form long, thin, stable bands perpendicular to the commo...
We demonstrate the closed-loop control of a magnetotactic bacterium (MTB), i.e., Magnetospirillum ma...