The active flagellum propels a motile sperm cell by traveling bending waves. Here, we demonstrate that non-motile cells have the capacity to be wirelessly actuated by external magnetic fields and reveal insights into their propulsion characteristics. Partial coating of the sperm head with nanoparticle aggregates is achieved by electrostatic-based self-assembly. The coating enables propagation of helical traveling waves along the passive flagellum under the action of a periodic magnetic field. We compare the waveforms of active and passive flagellated motion and show noticeable asymmetry in the case of magnetically actuated cells, leading to lower linearity (LIN = VSL / VCL) of the taken pathway. The average curvature of the flagellar beat c...
The beat patterns of mammalian sperm flagella can be categorised into two different types. The first...
We experimentally demonstrate that using oscillating weak magnetic fields a sperm-shaped microrobot ...
Sperm cells swim through the fluid by a periodic wave-like beating of their flagellum. At low R...
The active flagellum propels a motile sperm cell by traveling bending waves. Here, we demonstrate th...
Of all the various locomotion strategies in low- (Formula presented.), traveling-wave propulsion met...
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...
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...
Sperm-driven micromotors, consisting of a single sperm cell captured in a microcap, utilize the stro...
The propulsion mechanics driving the movement of living cells constitutes one of the most incredible...
Sperm are propelled by bending waves traveling along their flagellum. For steering in gradients of s...
Sperm cells undergo complex interactions with external environments, such as a solid-boundary, fluid...
Eukaryotic flagellar swimming is driven by a slender motile unit, the axoneme, which possesses an in...
We study the magnetic-based motion control of a sperm-flagella driven Micro-Bio-Robot (MBR), and dem...
The beat patterns of mammalian sperm flagella can be categorised into two different types. The first...
We experimentally demonstrate that using oscillating weak magnetic fields a sperm-shaped microrobot ...
Sperm cells swim through the fluid by a periodic wave-like beating of their flagellum. At low R...
The active flagellum propels a motile sperm cell by traveling bending waves. Here, we demonstrate th...
Of all the various locomotion strategies in low- (Formula presented.), traveling-wave propulsion met...
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...
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...
Sperm-driven micromotors, consisting of a single sperm cell captured in a microcap, utilize the stro...
The propulsion mechanics driving the movement of living cells constitutes one of the most incredible...
Sperm are propelled by bending waves traveling along their flagellum. For steering in gradients of s...
Sperm cells undergo complex interactions with external environments, such as a solid-boundary, fluid...
Eukaryotic flagellar swimming is driven by a slender motile unit, the axoneme, which possesses an in...
We study the magnetic-based motion control of a sperm-flagella driven Micro-Bio-Robot (MBR), and dem...
The beat patterns of mammalian sperm flagella can be categorised into two different types. The first...
We experimentally demonstrate that using oscillating weak magnetic fields a sperm-shaped microrobot ...
Sperm cells swim through the fluid by a periodic wave-like beating of their flagellum. At low R...