Abstract Bacterial swarming is a collective mode of motion in which cells migrate rapidly over surfaces, forming dynamic patterns of whirls and jets. This review presents a physical point of view of swarming bacteria, with an emphasis on the statistical properties of the swarm dynamics as observed in experiments. The basic physical principles underlying the swarm and their relation to contemporary theories of collective motion and active matter are reviewed and discussed in the context of the biological properties of swarming cells. We suggest a paradigm according to which bacteria have optimized some of their physical properties as a strategy for rapid surface translocation. In other words, cells take advantage of favorable physics, enabli...
From schools of fish to flocks of birds and herds of wildebeest, the movements of many organisms are c...
AbstractSwarming bacteria move on agar surfaces in groups, using flagella as motive organelles. Moti...
Bacteria within a swarm move characteristically in packs, displaying an intricate swirling motion in...
Many bacteria simultaneously grow and spread rapidly over a surface that supplies them with nutrient...
AbstractWhen vegetative bacteria that can swim are grown in a rich medium on an agar surface, they b...
Swarming is a particular type of motility that is promoted by flagella and allows bacteria to move r...
In the present work we simulate the basic two-dimensional dynamics of swarming E. coli bacteria on t...
When vegetative bacteria that can swim are grown in a rich medium on an agar surface, they become mu...
In the present work we simulate the basic two-dimensional dynamics of swarming E. coli bacteria on t...
Simultaneous acquisition of phase-contrast light microscopy and fluorescently labeled bacteria, movi...
In nature, bacterial collectives typically consist of multiple species, which are interacting both b...
We determine and relate the characteristic velocity, length, and time scales for bacterial motion in...
Swarming is the fastest known bacterial mode of surface translocation and enables the rapid coloniza...
Swarming is the fastest known bacterial mode of surface translocation and enables the rapid coloniza...
Collective motion of living organisms is ubiquitous in nature. In biology, certain bacteria such as ...
From schools of fish to flocks of birds and herds of wildebeest, the movements of many organisms are c...
AbstractSwarming bacteria move on agar surfaces in groups, using flagella as motive organelles. Moti...
Bacteria within a swarm move characteristically in packs, displaying an intricate swirling motion in...
Many bacteria simultaneously grow and spread rapidly over a surface that supplies them with nutrient...
AbstractWhen vegetative bacteria that can swim are grown in a rich medium on an agar surface, they b...
Swarming is a particular type of motility that is promoted by flagella and allows bacteria to move r...
In the present work we simulate the basic two-dimensional dynamics of swarming E. coli bacteria on t...
When vegetative bacteria that can swim are grown in a rich medium on an agar surface, they become mu...
In the present work we simulate the basic two-dimensional dynamics of swarming E. coli bacteria on t...
Simultaneous acquisition of phase-contrast light microscopy and fluorescently labeled bacteria, movi...
In nature, bacterial collectives typically consist of multiple species, which are interacting both b...
We determine and relate the characteristic velocity, length, and time scales for bacterial motion in...
Swarming is the fastest known bacterial mode of surface translocation and enables the rapid coloniza...
Swarming is the fastest known bacterial mode of surface translocation and enables the rapid coloniza...
Collective motion of living organisms is ubiquitous in nature. In biology, certain bacteria such as ...
From schools of fish to flocks of birds and herds of wildebeest, the movements of many organisms are c...
AbstractSwarming bacteria move on agar surfaces in groups, using flagella as motive organelles. Moti...
Bacteria within a swarm move characteristically in packs, displaying an intricate swirling motion in...