Publication:
Permanent magnet array-driven navigation of wireless millirobots inside soft tissues

Thumbnail Image

Organizational Units

Program

KU-Authors

KU Authors

Co-Authors

Son, Donghoon
Uğurlu, Musab Cağrı

Advisor

Publication Date

2021

Language

English

Type

Journal Article

Journal Title

Journal ISSN

Volume Title

Abstract

Creating wireless milliscale robots that navigate inside soft tissues of the human body for medical applications has been a challenge because of the limited onboard propulsion and powering capacity at small scale. Here, we propose around 100 permanent magnet array-based remotely propelled millirobot system that enables a cylindrical magnetic millirobot to navigate in soft tissues via continuous penetration. By creating a strong magnetic force trap with magnetic gradients on the order of 7 T/m inside a soft tissue, the robot is attracted to the center of the array even without active control. By combining the array with a motion stage and a fluoroscopic x-ray imaging system, the magnetic robot followed complex paths in an ex vivo porcine brain with extreme curvatures in sub-millimeter precision. This system enables future wireless medical millirobots that can deliver drugs; perform biopsy, hyperthermia, and cauterization; and stimulate neurons with small incisions in body tissues.

Description

Source:

Science Advances

Publisher:

American Association for the Advancement of Science (AAAS)

Keywords:

Subject

Multidisciplinary sciences

Citation

Endorsement

Review

Supplemented By

Referenced By

Copy Rights Note

0

Views

0

Downloads

View PlumX Details