Bio-hybrid micro-swimmers, composed of biological entities integrated with synthetic constructs, actively transport cargo by converting chemical energy into mechanical work. Here, using isolated and demembranated flagella from green algae Chlamydomonas reinhardtii (C. reinhardtii), we build efficient axonemally-driven micro-swimmers that consume ATP to propel micron-sized beads. Depending on the calcium concentration, we observed two main classes of motion: whereas beads move along curved trajectories at calcium concentrations below 0.03 mM, they are propelled along straight paths when the calcium concentration increases. In this regime, they reached velocities of approximately 20 μm s−1, comparable to human sperm velocity in vivo. We relat...
Algae cells can be considered as microrobots from the perspective of engineering. These organisms no...
The MATLAB-code.zip and Videos.zip files contain the algorithm for tracking the axonemes and the vid...
Abstract Microscale self‐propelled robots show great promise in the biomedical field and are the foc...
International audienceBio-hybrid micro-swimmers, composed of biological entities integrated with syn...
Bacteria biohybrids employ the motility and power of swimming bacteria to carry and maneuver microsc...
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...
Swimming microorganisms are a source of inspiration for small scale robots that are intended to oper...
Currently there is a great deal of interest in micro and nano scale robotics for biomedical applicat...
Abstract — Swimming microrobots have the potential to be used in medical applications such as target...
Self-propelled bacteria can be integrated into synthetic micromachines and act as biological propell...
Over millions of years, Nature has optimized the motion of biological systems at the micro and nanos...
We show that DNA-based self-assembly can serve as a general and flexible tool to construct artificia...
Algae cells (Chlamydomonas reinhardtii) have been controlled as microrobots to move and carry cargoe...
Life under the microscope is significantly different from our experiences in the macroscopic world. ...
Algae cells can be considered as microrobots from the perspective of engineering. These organisms no...
The MATLAB-code.zip and Videos.zip files contain the algorithm for tracking the axonemes and the vid...
Abstract Microscale self‐propelled robots show great promise in the biomedical field and are the foc...
International audienceBio-hybrid micro-swimmers, composed of biological entities integrated with syn...
Bacteria biohybrids employ the motility and power of swimming bacteria to carry and maneuver microsc...
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...
Swimming microorganisms are a source of inspiration for small scale robots that are intended to oper...
Currently there is a great deal of interest in micro and nano scale robotics for biomedical applicat...
Abstract — Swimming microrobots have the potential to be used in medical applications such as target...
Self-propelled bacteria can be integrated into synthetic micromachines and act as biological propell...
Over millions of years, Nature has optimized the motion of biological systems at the micro and nanos...
We show that DNA-based self-assembly can serve as a general and flexible tool to construct artificia...
Algae cells (Chlamydomonas reinhardtii) have been controlled as microrobots to move and carry cargoe...
Life under the microscope is significantly different from our experiences in the macroscopic world. ...
Algae cells can be considered as microrobots from the perspective of engineering. These organisms no...
The MATLAB-code.zip and Videos.zip files contain the algorithm for tracking the axonemes and the vid...
Abstract Microscale self‐propelled robots show great promise in the biomedical field and are the foc...