Swimming microrobots can exhibit high levels of performance to move freely in the human body fluids to fulfill risky biomedical operations by mimicking microorganisms. Many researchers have proposed micro swimming methods for viscous flows based on flagellar motion. Here, a novel swimming microrobot inspired by ciliated microorganisms based on artificial cilia is introduced. The hydrodynamic model is developed and performance parameters such as propulsive force, propulsive velocity and efficiency of the microrobot are computed. The velocity and efficiency dependence on design parameters of microrobot is evaluated. The proposed micro swimming concept offers appropriate efficiency, thrust, speed and maneuverability. It is shown that the intro...
In the hydrodynamic environment of biological microorganisms inertia is irrelevant and all motion is...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Swimming in viscous fluids is a challenging task due to the absence of inertia at low Reynolds numbe...
State-of-the-art miniaturisation technologies are now boosting the development of endogenous medical...
The envisioned applications of microrobots in bodily fluids have raised the demand for effectively s...
The quest for swimming microrobots originates from possible applications in medicine, especially inv...
The quest for swimming microrobots originates from possible applications in medicine, especially inv...
Abstract — Microrobots can make a great impact in medical applications such as minimally-invasive su...
Microrobots can make a great impact in medical applications such as minimally-invasive surgery, scre...
Swimming microorganisms are a source of inspiration for small scale robots that are intended to oper...
Dynamics modeling and analysis of a tiny swimming robot, which is composed of a helix type head and ...
Abstract — Swimming microrobots have the potential to be used in medical applications such as target...
Life under the microscope is significantly different from our experiences in the macroscopic world. ...
Medical applications are among the most impactful areas of microrobotics. The ultimate goal of medic...
Accurate prediction of the three-dimensional trajectories of micro/nano-swimmers is a key element as...
In the hydrodynamic environment of biological microorganisms inertia is irrelevant and all motion is...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Swimming in viscous fluids is a challenging task due to the absence of inertia at low Reynolds numbe...
State-of-the-art miniaturisation technologies are now boosting the development of endogenous medical...
The envisioned applications of microrobots in bodily fluids have raised the demand for effectively s...
The quest for swimming microrobots originates from possible applications in medicine, especially inv...
The quest for swimming microrobots originates from possible applications in medicine, especially inv...
Abstract — Microrobots can make a great impact in medical applications such as minimally-invasive su...
Microrobots can make a great impact in medical applications such as minimally-invasive surgery, scre...
Swimming microorganisms are a source of inspiration for small scale robots that are intended to oper...
Dynamics modeling and analysis of a tiny swimming robot, which is composed of a helix type head and ...
Abstract — Swimming microrobots have the potential to be used in medical applications such as target...
Life under the microscope is significantly different from our experiences in the macroscopic world. ...
Medical applications are among the most impactful areas of microrobotics. The ultimate goal of medic...
Accurate prediction of the three-dimensional trajectories of micro/nano-swimmers is a key element as...
In the hydrodynamic environment of biological microorganisms inertia is irrelevant and all motion is...
Bio-inspired designs can provide an answer to engineering problems such as swimming strategies at th...
Swimming in viscous fluids is a challenging task due to the absence of inertia at low Reynolds numbe...