Endoscopy-assisted magnetic navigation of biohybrid soft microrobots with rapid endoluminal delivery and imaging
Эндоскопически ассистируемая магнитная навигация био-гибридных мягких микророботов с быстрой внутриполостной доставкой и визуализацией
2021-03-17
SCID: 54.1/qkf5eckm
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biohybrid microrobotsdual imaging systemendoscopy-assisted magnetic actuationmagnetic microrobotsmagnetic stem cell spheroid microrobots
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Abstract (AI)
High-precision delivery of microrobots at the whole-body scale is of considerable importance for efforts toward targeted therapeutic intervention. However, vision-based control of microrobots, to deep and narrow spaces inside the body, remains a challenge. Here, we report a soft and resilient magnetic cell microrobot with high biocompatibility that can interface with the human body and adapt to the complex surroundings while navigating inside the body. We achieve time-efficient delivery of soft microrobots using an integrated platform called endoscopy-assisted magnetic actuation with dual imaging system (EMADIS). EMADIS enables rapid deployment across multiple organ/tissue barriers at the whole-body scale and high-precision delivery of soft and biohybrid microrobots in real time to tiny regions with depth up to meter scale through natural orifice, which are commonly inaccessible and even invisible by conventional endoscope and medical robots. The precise delivery of magnetic stem cell spheroid microrobots (MSCSMs) by the EMADIS transesophageal into the bile duct with a total distance of about 100 centimeters can be completed within 8 minutes. The integration strategy offers a full clinical imaging technique-based therapeutic/intervention system, which broadens the accessibility of hitherto hard-to-access regions, by means of soft microrobots.
Key Findings
1
A soft, resilient magnetic cell microrobot was developed with high biocompatibility and adaptability to complex in-body environments.
2
EMADIS enables high-precision delivery through natural orifices to tiny, previously inaccessible or invisible regions at depths approaching the meter scale.
3
Magnetic stem cell spheroid microrobots were delivered transesophageally into the bile duct over approximately 100 centimeters within 8 minutes.
4
The EMADIS platform combines endoscopy-assisted magnetic actuation with dual imaging for rapid, real-time microrobot delivery across multiple organ and tissue barriers.
5
The integrated system provides a clinically compatible imaging-based therapeutic and intervention platform that expands access to difficult-to-reach anatomical regions.
Research Object
soft biohybrid magnetic cell microrobots, specifically magnetic stem cell spheroid microrobots, navigating through body lumens
Research Subject
rapid, high-precision endoluminal delivery and real-time imaging-guided navigation of microrobots across complex anatomical barriers to deep, otherwise inaccessible regions
Publication Details
Publication Date
2021-03-17
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