One of the great challenges in nano and micro scale science and engineering is the independent manipulation of biological cells and small man-made objects with active sensing. For such biomedical applications as single cell manipulation, telemetry, and localized targeted delivery of chemicals, it is important to fabricate microstructures that can be powered and controlled without a tether in fluidic environments. These microstructures can be used to develop microrobots that have the potential to make existing therapeutic and diagnostic procedures less invasive. Actuation can be realized using various different organic and inorganic methods. Previous studies explored different forms of actuation and control with microorganisms. Bacteria, in ...
Bacteria biohybrids employ the motility and power of swimming bacteria to carry and maneuver microsc...
Autonomous biohybrid microrobots with unique features and functions are an emerging technology in bi...
An autonomous robot perceives its environment, makes decisions based on acquired information and pro...
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...
Autonomous fleets of small-scale robots have the potential to enhance operations or open entirely ne...
Thanks to millions of years of evolution, living beings have developed complex mechanisms for sensin...
The continuing trend in miniaturization of technology, advancements in micro and nanofabrication and...
Abstract Microscale robots offer an unprecedented oppor-tunity to perform tasks at resolutions appr...
Microorganisms can move in complex media, respond to the environment and self-organize. The field of...
International audienceThe demand in the biomedical field for fast and precise devices for in vitro ...
Robotics has markedly extended the reach of human beings in sensing, manipulating, and transforming ...
The continuing trend in miniaturization of technology, advancements in micro and nanofabrication and...
<p>Living systems have developed intricate multi-functional methods of sensing and responding to the...
<p>Miniaturization of on-board actuation and powering engenders the proliferation of biohybrid micro...
Bacteria biohybrids employ the motility and power of swimming bacteria to carry and maneuver microsc...
Autonomous biohybrid microrobots with unique features and functions are an emerging technology in bi...
An autonomous robot perceives its environment, makes decisions based on acquired information and pro...
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...
Autonomous fleets of small-scale robots have the potential to enhance operations or open entirely ne...
Thanks to millions of years of evolution, living beings have developed complex mechanisms for sensin...
The continuing trend in miniaturization of technology, advancements in micro and nanofabrication and...
Abstract Microscale robots offer an unprecedented oppor-tunity to perform tasks at resolutions appr...
Microorganisms can move in complex media, respond to the environment and self-organize. The field of...
International audienceThe demand in the biomedical field for fast and precise devices for in vitro ...
Robotics has markedly extended the reach of human beings in sensing, manipulating, and transforming ...
The continuing trend in miniaturization of technology, advancements in micro and nanofabrication and...
<p>Living systems have developed intricate multi-functional methods of sensing and responding to the...
<p>Miniaturization of on-board actuation and powering engenders the proliferation of biohybrid micro...
Bacteria biohybrids employ the motility and power of swimming bacteria to carry and maneuver microsc...
Autonomous biohybrid microrobots with unique features and functions are an emerging technology in bi...
An autonomous robot perceives its environment, makes decisions based on acquired information and pro...