Collective bacterial dynamics plays a crucial role in colony development. Although many research groups have studied the behavior of fluidic swarm colonies, the detailed mechanics of its motion remains elusive. Here, we developed a visualization method using submicron fluorescent beads for investigating the flow field in a thin layer of fluid that covers a Bacillus subtilis swarm colony growing on an agar plate. The beads were initially embedded in the agar plate and subsequently distributed spontaneously at the upper surface of the expanding colony. We conducted long-term live cell imaging of the B. subtilis colony using the fluorescent tracers, and obtained high-resolution velocity maps of microscale vortices in the swarm colony using par...
We develop an optical imaging technique for spatially and temporally tracking biofilm growth and the...
Simultaneous acquisition of phase-contrast light microscopy and fluorescently labeled bacteria, movi...
Abstract Background Swarming motility allows microorganisms to move rapidly over surfaces. The Gram-...
Abstract: Collective bacterial dynamics plays a crucial role in colony development. Although many re...
Bacterial surface motility, such as swarming, is commonly examined in the laboratory using plate ass...
Understanding the molecular mechanisms underlying bacterial swarming motility requires studying the ...
Swarmingmotility is a fascinating phenomenon by which some bacteria use flagella to move over solid ...
We determine and relate the characteristic velocity, length, and time scales for bacterial motion in...
Collective motion of living organisms is ubiquitous in nature. In biology, certain bacteria such as ...
Microbes provide an intriguing system to study social interaction among individuals within a populat...
Background: Swarming motility allows microorganisms to move rapidly over surfaces. The Grampositive ...
Biofilm is commonly defined as accumulation of microbes, embedded in a self-secreted extra-cellular ...
Proteus mirabilis colonies exhibit striking geometric regularity. Basic microbiological methods and ...
Most time lapse microscopy experiments studying bacterial processes ie growth, progression through t...
Biofilm is commonly defined as accumulation of microbes, embedded in a self-secreted extra-cellular ...
We develop an optical imaging technique for spatially and temporally tracking biofilm growth and the...
Simultaneous acquisition of phase-contrast light microscopy and fluorescently labeled bacteria, movi...
Abstract Background Swarming motility allows microorganisms to move rapidly over surfaces. The Gram-...
Abstract: Collective bacterial dynamics plays a crucial role in colony development. Although many re...
Bacterial surface motility, such as swarming, is commonly examined in the laboratory using plate ass...
Understanding the molecular mechanisms underlying bacterial swarming motility requires studying the ...
Swarmingmotility is a fascinating phenomenon by which some bacteria use flagella to move over solid ...
We determine and relate the characteristic velocity, length, and time scales for bacterial motion in...
Collective motion of living organisms is ubiquitous in nature. In biology, certain bacteria such as ...
Microbes provide an intriguing system to study social interaction among individuals within a populat...
Background: Swarming motility allows microorganisms to move rapidly over surfaces. The Grampositive ...
Biofilm is commonly defined as accumulation of microbes, embedded in a self-secreted extra-cellular ...
Proteus mirabilis colonies exhibit striking geometric regularity. Basic microbiological methods and ...
Most time lapse microscopy experiments studying bacterial processes ie growth, progression through t...
Biofilm is commonly defined as accumulation of microbes, embedded in a self-secreted extra-cellular ...
We develop an optical imaging technique for spatially and temporally tracking biofilm growth and the...
Simultaneous acquisition of phase-contrast light microscopy and fluorescently labeled bacteria, movi...
Abstract Background Swarming motility allows microorganisms to move rapidly over surfaces. The Gram-...