A large variety of motile bacterial species exhibit collective motions while inhabiting liquids or colonizing surfaces. These collective motions are often characterized by coherent dynamic clusters, where hundreds of cells move in correlated whirls and jets. Previously, all species that were known to form such motion had a rod-shaped structure, which enhances the order through steric and hydrodynamic interactions. Here we show that the spherical motile bacteria Serratia marcescens exhibit robust collective dynamics and correlated coherent motion while grown in suspensions. As cells migrate to the upper surface of a drop, they form a monolayer, and move collectively in whirls and jets. At all concentrations, the distribution of the bacterial...
At high cell density, swimming bacteria exhibit collective motility patterns, self-organized through...
In this fluid dynamics video we explore the nature and causes of the spontaneous ordering that emerg...
Dense suspensions of swimming bacteria are known to exhibit collective behaviour arising from the in...
A large variety of motile bacterial species exhibit collective motions while inhabiting liquids or c...
<div><p>A large variety of motile bacterial species exhibit collective motions while inhabiting liqu...
We characterize cell motion in experiments and show that the transition to collective motion in colo...
Simultaneous acquisition of phase-contrast light microscopy and fluorescently labeled bacteria, movi...
The study of collective motion in bacterial suspensions has been of significant recent interest. To ...
Abstract. The study of collective motion in bacterial suspensions has been of significant recent int...
Suspensions of the aerobic bacteria {\it Bacilus subtilis} develop patterns and flows from the inter...
This work explores bacterial motility from the mechanisms of propulsion of an individual cell to the...
We have studied active and passive forms of pattern formation and synchronized motion in high-densit...
Bacterial processes ranging from gene expression to motility and biofilm formation are constantly ch...
From schools of fish to flocks of birds and herds of wildebeest, the movements of many organisms are c...
“From chaos, order can emerge”, a counterintuitive statement but also one laying the foundation for ...
At high cell density, swimming bacteria exhibit collective motility patterns, self-organized through...
In this fluid dynamics video we explore the nature and causes of the spontaneous ordering that emerg...
Dense suspensions of swimming bacteria are known to exhibit collective behaviour arising from the in...
A large variety of motile bacterial species exhibit collective motions while inhabiting liquids or c...
<div><p>A large variety of motile bacterial species exhibit collective motions while inhabiting liqu...
We characterize cell motion in experiments and show that the transition to collective motion in colo...
Simultaneous acquisition of phase-contrast light microscopy and fluorescently labeled bacteria, movi...
The study of collective motion in bacterial suspensions has been of significant recent interest. To ...
Abstract. The study of collective motion in bacterial suspensions has been of significant recent int...
Suspensions of the aerobic bacteria {\it Bacilus subtilis} develop patterns and flows from the inter...
This work explores bacterial motility from the mechanisms of propulsion of an individual cell to the...
We have studied active and passive forms of pattern formation and synchronized motion in high-densit...
Bacterial processes ranging from gene expression to motility and biofilm formation are constantly ch...
From schools of fish to flocks of birds and herds of wildebeest, the movements of many organisms are c...
“From chaos, order can emerge”, a counterintuitive statement but also one laying the foundation for ...
At high cell density, swimming bacteria exhibit collective motility patterns, self-organized through...
In this fluid dynamics video we explore the nature and causes of the spontaneous ordering that emerg...
Dense suspensions of swimming bacteria are known to exhibit collective behaviour arising from the in...