Abstract Magnetic achiral planar microswimmers can be massively fabricated at low cost and are envisioned to be useful for in vivo biomedical applications. To understand locomotion in representative in vivo environments, we investigated the swimming performance of achiral planar microswimmers in methylcellulose solutions. We observed that these microswimmers displayed very similar swimming characteristics in methylcellulose solutions as in water. Furthermore, this study indicated that the range of precession angles increased as the concentration of MC solution increased. Last, it was demonstrated that achiral planar microswimmers with similar precession angles exhibited nearly the same dimensionless speeds in different concentrations of the...
Microswimmers capable of propulsion at low Reynolds numbers have great potential for numerous applic...
In recent years, much effort has been placed on development of microscale devices capable of propuls...
Microswimmers are prospective agents for manipulation in fluid environments at low scales. Potential...
Microswimmers, i.e. swimmers of micron size experiencing low Reynolds numbers, have received a great...
Magnetically actuated micro‐/nanoswimmers can potentially be used in noninvasive biomedical applicat...
International audienceThe movement of microorganisms is not only an essential aspect of life, it als...
This paper demonstrates the performance of modular magnetic bead based microswimmers inside syntheti...
Various kinds of helical swimmers inspired by E. coli bacteria have been developed continually in ma...
In this thesis, we investigate magnetically actuated rigid microswimmers based on analytical and num...
PublishedJournal ArticleThis is the author accepted manuscript. The final version is available from ...
Bio-inspired microswimmers have great potential for medical procedures in conduits and vessels insid...
Trajectories are obtained for millimeter-scale artificial microswimmers inside circular channels fil...
International audienceMany motile microorganisms swim and navigate in chemically and mechanically co...
Many motile microorganisms swim and navigate in chemically and mechanically complex environments. Th...
To achieve permanent propulsion of micro-objects in confined fluids is an elusive but challenging go...
Microswimmers capable of propulsion at low Reynolds numbers have great potential for numerous applic...
In recent years, much effort has been placed on development of microscale devices capable of propuls...
Microswimmers are prospective agents for manipulation in fluid environments at low scales. Potential...
Microswimmers, i.e. swimmers of micron size experiencing low Reynolds numbers, have received a great...
Magnetically actuated micro‐/nanoswimmers can potentially be used in noninvasive biomedical applicat...
International audienceThe movement of microorganisms is not only an essential aspect of life, it als...
This paper demonstrates the performance of modular magnetic bead based microswimmers inside syntheti...
Various kinds of helical swimmers inspired by E. coli bacteria have been developed continually in ma...
In this thesis, we investigate magnetically actuated rigid microswimmers based on analytical and num...
PublishedJournal ArticleThis is the author accepted manuscript. The final version is available from ...
Bio-inspired microswimmers have great potential for medical procedures in conduits and vessels insid...
Trajectories are obtained for millimeter-scale artificial microswimmers inside circular channels fil...
International audienceMany motile microorganisms swim and navigate in chemically and mechanically co...
Many motile microorganisms swim and navigate in chemically and mechanically complex environments. Th...
To achieve permanent propulsion of micro-objects in confined fluids is an elusive but challenging go...
Microswimmers capable of propulsion at low Reynolds numbers have great potential for numerous applic...
In recent years, much effort has been placed on development of microscale devices capable of propuls...
Microswimmers are prospective agents for manipulation in fluid environments at low scales. Potential...