Recent advances in micro- and nanoscale fabrication techniques allow for the construction of rigid, helically shaped microswimmers that can be actuated using applied magnetic fields. These swimmers represent the first steps toward the development of microrobots for targeted drug delivery and minimally invasive surgical procedures. To assess the performance of these devices and improve on their design, we perform shape optimization computations to determine swimmer geometries that maximize speed in the direction of a given applied magnetic torque. We directly assess aspects of swimmer shapes that have been developed in previous experimental studies, including helical propellers with elongated cross sections and attached payloads. From these ...
Helical microswimmers capable of propulsion at low Reynolds numbers have been proposed for numerous ...
The field of synthetic microswimmers, micro-robots moving in aqueous environments, has evolved signi...
We present an automated procedure for the design of optimal actuation for flagellar magnetic microsw...
Recent advances in micro- and nanoscale fabrication techniques allow for the construction of rigid, ...
Magnetically actuated micro‐/nanoswimmers can potentially be used in noninvasive biomedical applicat...
Abstract—Micro- and nanorobots capable of controlled propulsion at low Reynolds number are foreseen ...
International audienceHelical swimmers, actuated by low-strength uniform rotating magnetic fields, c...
In this thesis, we investigate magnetically actuated rigid microswimmers based on analytical and num...
Milli-swimmers are small, magnetically controlled robots with helical geometries that create a propu...
Magnetic microswimmers are promising devices for biomedical and environmental applications. Bacteriu...
International audienceMicro- and nanorobots capable of controlled propulsion at low Reynolds number ...
International audienceSynthetic microswimmers mimicking biological movements at the microscale have ...
Microrobots have the potential to dramatically change many aspects of medicine by navigating through...
Magnetic microswimmers are promising devices for biomedical and environmental applications. Bacteriu...
The unique swimming strategies of natural microorganisms have inspired recent development of magneti...
Helical microswimmers capable of propulsion at low Reynolds numbers have been proposed for numerous ...
The field of synthetic microswimmers, micro-robots moving in aqueous environments, has evolved signi...
We present an automated procedure for the design of optimal actuation for flagellar magnetic microsw...
Recent advances in micro- and nanoscale fabrication techniques allow for the construction of rigid, ...
Magnetically actuated micro‐/nanoswimmers can potentially be used in noninvasive biomedical applicat...
Abstract—Micro- and nanorobots capable of controlled propulsion at low Reynolds number are foreseen ...
International audienceHelical swimmers, actuated by low-strength uniform rotating magnetic fields, c...
In this thesis, we investigate magnetically actuated rigid microswimmers based on analytical and num...
Milli-swimmers are small, magnetically controlled robots with helical geometries that create a propu...
Magnetic microswimmers are promising devices for biomedical and environmental applications. Bacteriu...
International audienceMicro- and nanorobots capable of controlled propulsion at low Reynolds number ...
International audienceSynthetic microswimmers mimicking biological movements at the microscale have ...
Microrobots have the potential to dramatically change many aspects of medicine by navigating through...
Magnetic microswimmers are promising devices for biomedical and environmental applications. Bacteriu...
The unique swimming strategies of natural microorganisms have inspired recent development of magneti...
Helical microswimmers capable of propulsion at low Reynolds numbers have been proposed for numerous ...
The field of synthetic microswimmers, micro-robots moving in aqueous environments, has evolved signi...
We present an automated procedure for the design of optimal actuation for flagellar magnetic microsw...