Wireless micro- and nanorobots are biomedical devices with a potential use in high-precision minimally invasive therapies. Here, a highly integrated multifunctional soft microrobot is developed for targeted cell therapy applications, featuring targeted cell transportation and induced cell differentiation. The micromachines are made of composites consisting of a soft piezoelectric polymer matrix in which magnetic nanoparticles are dispersed. The magnetic nanoparticles serve as the component for the device's magnetic actuation, while the piezoelectric polymer acts as both a steerable scaffold and an acoustically responsive cell electrostimulation platform. With the application of a rotating magnetic field, the microrobots swim in a corkscrew ...
Nature-inspired actuators that can be driven by various stimuli are an emerging application in mobil...
Magnetic helical micro- and nanorobots can perform 3D navigation in various liquids with a sub-micro...
The ability to control microrobots by means of magnetic fields has become of increasing interest to ...
Magnetic micro- and nanorobots are promising candidates for the delivery of therapeutic agents in di...
Last two decades has seen a growth of the research on untethered mobile small-scale robots. These mo...
Small soft robotic systems are being explored for myriad applications in medicine. Specifically, mag...
A great deal of research has focused on small-scale robots for biomedical applications and minimally...
Piezoelectric nanomaterials have become increasingly popular in the field of biomedical applications...
With the rapid development of micro/nanomanufacturing technology, a variety of multifunctional micro...
We develop biohybrid magnetic microrobots by electrostatic self-assembly of nonmotile sperm cells an...
M-bots are small robots that can be actuated and localized inside the human body to aid in illness d...
Microrobots have the potential to dramatically change many aspects of medicine by navigating through...
Creating wireless milliscale robots that navigate inside soft tissues of the human body for medical ...
While recent wireless micromachines have shown increasing potential for medical use, their potential...
In recent years, there has been explosive growth in the number of investigations devoted to the deve...
Nature-inspired actuators that can be driven by various stimuli are an emerging application in mobil...
Magnetic helical micro- and nanorobots can perform 3D navigation in various liquids with a sub-micro...
The ability to control microrobots by means of magnetic fields has become of increasing interest to ...
Magnetic micro- and nanorobots are promising candidates for the delivery of therapeutic agents in di...
Last two decades has seen a growth of the research on untethered mobile small-scale robots. These mo...
Small soft robotic systems are being explored for myriad applications in medicine. Specifically, mag...
A great deal of research has focused on small-scale robots for biomedical applications and minimally...
Piezoelectric nanomaterials have become increasingly popular in the field of biomedical applications...
With the rapid development of micro/nanomanufacturing technology, a variety of multifunctional micro...
We develop biohybrid magnetic microrobots by electrostatic self-assembly of nonmotile sperm cells an...
M-bots are small robots that can be actuated and localized inside the human body to aid in illness d...
Microrobots have the potential to dramatically change many aspects of medicine by navigating through...
Creating wireless milliscale robots that navigate inside soft tissues of the human body for medical ...
While recent wireless micromachines have shown increasing potential for medical use, their potential...
In recent years, there has been explosive growth in the number of investigations devoted to the deve...
Nature-inspired actuators that can be driven by various stimuli are an emerging application in mobil...
Magnetic helical micro- and nanorobots can perform 3D navigation in various liquids with a sub-micro...
The ability to control microrobots by means of magnetic fields has become of increasing interest to ...