2022
DOI: 10.3390/applmech3040071
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Design and Fabrication of Untethered Light-Actuated Microbots in Fluid for Biomedical Applications

Abstract: Untethered mobile robots at the micro-scale have the ability to improve biomedical research by performing specialized tasks inside complex physiological environments. Light-controlled wireless microbots are becoming the center of interest thanks to their accuracy in navigation and potential to carry out operations in a non-invasive manner inside living environments. The pioneering light-engineered microbots are currently in the early stage of animal trials. There is a long way ahead before they can be employed… Show more

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Cited by 3 publications
(1 citation statement)
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“…Based on the proper application of the light-actuated microbots, the factors must be set accordingly. For in vivo applications, biomaterial compatibility is an important factor of consideration, while in other operations such as micromanipulation or mixing of microfluidics, control and load-transport mechanisms are more important than the biocompatibility of material [73,136,137]. Different aspects of designing the microbots are explored in detail in the following sections.…”
Section: Aspects Of Designmentioning
confidence: 99%
“…Based on the proper application of the light-actuated microbots, the factors must be set accordingly. For in vivo applications, biomaterial compatibility is an important factor of consideration, while in other operations such as micromanipulation or mixing of microfluidics, control and load-transport mechanisms are more important than the biocompatibility of material [73,136,137]. Different aspects of designing the microbots are explored in detail in the following sections.…”
Section: Aspects Of Designmentioning
confidence: 99%