Of all the various locomotion strategies in low- (Formula presented.), traveling-wave propulsion methods with an elastic tail are preferred because they can be developed using simple designs and fabrication procedures. The only intrinsic property of the elastic tail that governs the form and rate of wave propagation along its length is the bending stiffness. Such traveling wave motion is performed by spermatozoa, which possess a tail that is characterized by intrinsic variable stiffness along its length. In this paper, the passive bending stiffness of the magnetic nanoparticle-coated flagella of bull sperm cells is measured using a contactless electromagnetic-based excitation method. Numerical elasto-hydrodynamic models are first developed ...
Sperm-driven micromotors, consisting of a single sperm cell captured in a microcap, utilize the stro...
Several microorganisms swim by a beating flagellum more rapidly in solutions with gel-like structure...
Sperm cells undergo a wide variety of swimming patterns by a beating flagellum to maintain high spee...
Of all the various locomotion strategies in low- (Formula presented.), traveling-wave propulsion met...
The active flagellum propels a motile sperm cell by traveling bending waves. Here, we demonstrate th...
The propulsion mechanics driving the movement of living cells constitutes one of the most incredible...
Technical design features for improving the way a passive elastic filament produces propulsive thrus...
Abstract Sperm cells can move at a high speed in biofluids based on the flexible flagella, which ins...
Technical design features for improving the way a passive elastic filament produces propulsive thrus...
We study the magnetic-based motion control of a sperm-flagella driven Micro-Bio-Robot (MBR), and dem...
The theory of flexural vibrations in thin rods, applied to the movement of flagella, has been extend...
Sperm cells undergo a wide variety of swimming patterns by a beating flagellum to maintain high spee...
Mammalian sperm cells manage locomotion by the movement of their flagella. Dynein motors inside the ...
The beat patterns of mammalian sperm flagella can be categorised into two different types. The first...
Sperm cells undergo complex interactions with external environments, such as a solid-boundary, fluid...
Sperm-driven micromotors, consisting of a single sperm cell captured in a microcap, utilize the stro...
Several microorganisms swim by a beating flagellum more rapidly in solutions with gel-like structure...
Sperm cells undergo a wide variety of swimming patterns by a beating flagellum to maintain high spee...
Of all the various locomotion strategies in low- (Formula presented.), traveling-wave propulsion met...
The active flagellum propels a motile sperm cell by traveling bending waves. Here, we demonstrate th...
The propulsion mechanics driving the movement of living cells constitutes one of the most incredible...
Technical design features for improving the way a passive elastic filament produces propulsive thrus...
Abstract Sperm cells can move at a high speed in biofluids based on the flexible flagella, which ins...
Technical design features for improving the way a passive elastic filament produces propulsive thrus...
We study the magnetic-based motion control of a sperm-flagella driven Micro-Bio-Robot (MBR), and dem...
The theory of flexural vibrations in thin rods, applied to the movement of flagella, has been extend...
Sperm cells undergo a wide variety of swimming patterns by a beating flagellum to maintain high spee...
Mammalian sperm cells manage locomotion by the movement of their flagella. Dynein motors inside the ...
The beat patterns of mammalian sperm flagella can be categorised into two different types. The first...
Sperm cells undergo complex interactions with external environments, such as a solid-boundary, fluid...
Sperm-driven micromotors, consisting of a single sperm cell captured in a microcap, utilize the stro...
Several microorganisms swim by a beating flagellum more rapidly in solutions with gel-like structure...
Sperm cells undergo a wide variety of swimming patterns by a beating flagellum to maintain high spee...