Controlled navigation of swimming micro robots inside fluid filled channels is necessary for applications in living tissues and vessels. Hydrodynamic behavior inside channels and interaction with channel walls need to be understood well for successful design and control of these surgical-tools-to-be. In this study, two different mechanisms are used for forward and lateral motion: rotation of helices in the direction of the helical axis leads to forward motion in the viscous fluid, and rolling due to wall traction results with the lateral motion near the wall. Experiments are conducted using a magnetic helical swimmer having 1.5 mm in length and 0.5 mm in diameter placed inside two different glycerol-filled channels with rectangular cross se...
This study reports experimental and numerical model results on swimming of microswimmers inside circ...
Trajectories are obtained for millimeter-scale artificial microswimmers inside circular channels fil...
This work reports the position and orientation of helical mm-sized microswimmers in circular channel...
Untethered swimming microrobots have many advantages for biomedical applications such as targeted dr...
Controlled swimming of bio-inspired microrobots in confined spaces needs to be understood well for p...
Bio-inspired microswimmers have great potential for medical procedures in conduits and vessels insid...
Micro swimming robots offer many advantages in biomedical applications, such as delivering potent dr...
Micro swimming robots offer many advantages in biomedical applications, such as delivering potent dr...
Micro swimming robots offer many advantages in biomedical applications, such as delivering potent dr...
Artificial microswimmers are prospective robotic agents especially in biomedical applications. A rot...
Artificial microswimmers have a huge potential in various microfluidic and medical applications. Mos...
Artificial microswimmers are prospective robotic agents especially in biomedical applications. A rot...
Artificial microswimmers have a huge potential in various microfluidic and medical applications. Mos...
Artificial microswimmers have a huge potential in various microfluidic and medical applications. Mos...
Artificial microswimmers are prospective robotic agents especially in biomedical applications. A rot...
This study reports experimental and numerical model results on swimming of microswimmers inside circ...
Trajectories are obtained for millimeter-scale artificial microswimmers inside circular channels fil...
This work reports the position and orientation of helical mm-sized microswimmers in circular channel...
Untethered swimming microrobots have many advantages for biomedical applications such as targeted dr...
Controlled swimming of bio-inspired microrobots in confined spaces needs to be understood well for p...
Bio-inspired microswimmers have great potential for medical procedures in conduits and vessels insid...
Micro swimming robots offer many advantages in biomedical applications, such as delivering potent dr...
Micro swimming robots offer many advantages in biomedical applications, such as delivering potent dr...
Micro swimming robots offer many advantages in biomedical applications, such as delivering potent dr...
Artificial microswimmers are prospective robotic agents especially in biomedical applications. A rot...
Artificial microswimmers have a huge potential in various microfluidic and medical applications. Mos...
Artificial microswimmers are prospective robotic agents especially in biomedical applications. A rot...
Artificial microswimmers have a huge potential in various microfluidic and medical applications. Mos...
Artificial microswimmers have a huge potential in various microfluidic and medical applications. Mos...
Artificial microswimmers are prospective robotic agents especially in biomedical applications. A rot...
This study reports experimental and numerical model results on swimming of microswimmers inside circ...
Trajectories are obtained for millimeter-scale artificial microswimmers inside circular channels fil...
This work reports the position and orientation of helical mm-sized microswimmers in circular channel...