Bacterial rotational motor complexes that propel flagellated bacteria possess unique properties like their size of a few nanometres and the ability of selfreproduction that have led to various exciting applications including biohybrid nano-machines. One mandatory prerequisite to utilize bacterial nano motors in fluid applications is the ability to transfer force and torque to the fluid, which usually can be achieved by attachment of the bacterial cell to adequate surfaces. Additionally, for optimal transfer of force or torque, precise control of the position down to the single cell level is of utmost importance. Based on a PIV (particle image velocimetry) evaluation of the induced flow of single bacteria,we propose and demonstrate attachmen...
# The Author(s) 2015. This article is published with open access at Springerlink.com Abstract The co...
Bacteria exhibit surface motility modes that play pivotal roles in early-stage biofilm community dev...
Currently there is a great deal of interest in micro and nano scale robotics for biomedical applicat...
Active micromixers with rotating elements are attractive microfluidic actuators in many applications...
Flagella can be used to make magnetically-controlled microfluidic and nanoscale devices for biomedic...
Self-propelled bacteria can be integrated into synthetic micromachines and act as biological propell...
One of the great challenges in nano and micro scale science and engineering is the independent manip...
One of the great challenges in nano and micro scale science and engineering is the independent manip...
<p>The bacterial flagellar motor of Escherichia coli is a nanoscale rotary engine essential for bact...
Over millions of years, Nature has optimized the motion of biological systems at the micro and nanos...
Self-propelling bacteria are a nanotechnology dream. These unicellular organisms are not just capabl...
AbstractWe activated a solid-fluid interface by attaching flagellated bacteria to a solid surface. W...
Bacteria exhibit surface motility modes that play pivotal roles in early-stage biofilm community dev...
The bacterial flagellar motor is a powerful, ion-driven molecular motor. Situated in the cell wall o...
Bacteria-driven biohybrid microswimmers (bacteriabots) combine synthetic cargo with motile living ba...
# The Author(s) 2015. This article is published with open access at Springerlink.com Abstract The co...
Bacteria exhibit surface motility modes that play pivotal roles in early-stage biofilm community dev...
Currently there is a great deal of interest in micro and nano scale robotics for biomedical applicat...
Active micromixers with rotating elements are attractive microfluidic actuators in many applications...
Flagella can be used to make magnetically-controlled microfluidic and nanoscale devices for biomedic...
Self-propelled bacteria can be integrated into synthetic micromachines and act as biological propell...
One of the great challenges in nano and micro scale science and engineering is the independent manip...
One of the great challenges in nano and micro scale science and engineering is the independent manip...
<p>The bacterial flagellar motor of Escherichia coli is a nanoscale rotary engine essential for bact...
Over millions of years, Nature has optimized the motion of biological systems at the micro and nanos...
Self-propelling bacteria are a nanotechnology dream. These unicellular organisms are not just capabl...
AbstractWe activated a solid-fluid interface by attaching flagellated bacteria to a solid surface. W...
Bacteria exhibit surface motility modes that play pivotal roles in early-stage biofilm community dev...
The bacterial flagellar motor is a powerful, ion-driven molecular motor. Situated in the cell wall o...
Bacteria-driven biohybrid microswimmers (bacteriabots) combine synthetic cargo with motile living ba...
# The Author(s) 2015. This article is published with open access at Springerlink.com Abstract The co...
Bacteria exhibit surface motility modes that play pivotal roles in early-stage biofilm community dev...
Currently there is a great deal of interest in micro and nano scale robotics for biomedical applicat...