Several microorganisms swim by a beating flagellum more rapidly in solutions with gel-like structure than they do in low-viscosity mediums. In this work, we aim to model and investigate this behavior in low Reynolds numbers viscous heterogeneous medium using soft microrobotic sperm samples. The microrobots are actuated using external magnetic fields and the influence of immersed obstacles on the flagellar propulsion is investigated. We use the resistive-force theory to predict the deformation of the beating flagellum, and the method of regularized Stokeslets for computing Stokes flows around the microrobot and the immersed obstacles. Our analysis and experiments show that obstacles in the medium improves the propulsion even when the Sperm n...
The propulsion mechanics driving the movement of living cells constitutes one of the most incredible...
Biohybrid micromotors propelled by motile cells are fascinating entities for autonomous biomedical o...
With the advent of small-scale robotics, several exciting new applications like Targeted Drug Delive...
Several microorganisms swim by a beating flagellum more rapidly in solutions with gel-like structure...
Spermbots are biohybrid micromachines consisting of single sperm cells captured in artificial magnet...
Sperm cells undergo a wide variety of swimming patterns by a beating flagellum to maintain high spee...
Sperm cells undergo a wide variety of swimming patterns by a beating flagellum to maintain high spee...
In this work, we investigate the near surface effects on the flagellar propulsion of externally actu...
Technical design features for improving the way a passive elastic filament produces propulsive thrus...
Sperm-driven micromotors, consisting of a single sperm cell captured in a microcap, utilize the stro...
Abstract — Swimming microrobots have the potential to be used in medical applications such as target...
Remarkably, mammalian sperm maintain a substantive proportion of their progressive swimming speed wi...
The detailed fluid mechanics of sperm propulsion are fundamental to our understanding of reproductio...
Life under the microscope is significantly different from our experiences in the macroscopic world. ...
It has been suggested that the swimming mechanism used by spermatozoa could be adopted for self-prop...
The propulsion mechanics driving the movement of living cells constitutes one of the most incredible...
Biohybrid micromotors propelled by motile cells are fascinating entities for autonomous biomedical o...
With the advent of small-scale robotics, several exciting new applications like Targeted Drug Delive...
Several microorganisms swim by a beating flagellum more rapidly in solutions with gel-like structure...
Spermbots are biohybrid micromachines consisting of single sperm cells captured in artificial magnet...
Sperm cells undergo a wide variety of swimming patterns by a beating flagellum to maintain high spee...
Sperm cells undergo a wide variety of swimming patterns by a beating flagellum to maintain high spee...
In this work, we investigate the near surface effects on the flagellar propulsion of externally actu...
Technical design features for improving the way a passive elastic filament produces propulsive thrus...
Sperm-driven micromotors, consisting of a single sperm cell captured in a microcap, utilize the stro...
Abstract — Swimming microrobots have the potential to be used in medical applications such as target...
Remarkably, mammalian sperm maintain a substantive proportion of their progressive swimming speed wi...
The detailed fluid mechanics of sperm propulsion are fundamental to our understanding of reproductio...
Life under the microscope is significantly different from our experiences in the macroscopic world. ...
It has been suggested that the swimming mechanism used by spermatozoa could be adopted for self-prop...
The propulsion mechanics driving the movement of living cells constitutes one of the most incredible...
Biohybrid micromotors propelled by motile cells are fascinating entities for autonomous biomedical o...
With the advent of small-scale robotics, several exciting new applications like Targeted Drug Delive...