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Ingestible, controllable, and degradable origami robot for patching stomach wounds

Shuhei Miyashita, Steven Guitron, Kazuhiro YOSHIDA, Shuguang Li, Dana D. Damian, Daniela Rus

Year
2016
Citations
180

Abstract

Developing miniature robots that can carry out versatile clinical procedures inside the body under the remote instructions of medical professionals has been a long time challenge. In this paper, we present origami-based robots that can be ingested into the stomach, locomote to a desired location, patch a wound, remove a foreign body, deliver drugs, and biodegrade. We designed and fabricated composite material sheets for a biocompatible and biodegradable robot that can be encapsulated in ice for delivery through the esophagus, embed a drug layer that is passively released to a wounded area, and be remotely controlled to carry out underwater maneuvers specific to the tasks using magnetic fields. The performances of the robots are demonstrated in a simulated physical environment consisting of an esophagus and stomach with properties similar to the biological organs.

Keywords

RobotBiocompatible materialComputer scienceStomachUnderwaterMedical roboticsBiomedical engineeringNanotechnologyArtificial intelligenceMaterials science

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