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A Novel Robotic Meshworm With Segment-Bending Anchoring for Colonoscopy

Julius E. Bernth, Alberto Arezzo, Hongbin Liu

Year
2017
Citations
80

Abstract

This letter introduces the design and evaluation of a novel worm-inspired, multisegment robotic endoscope with multiple degrees of freedom segments. The novelty of this design is that the robot is able to drive forwards and backwards, anchor itself, steer while inside a tubular structure and control the orientation of an end-mounted camera all by bending its flexible segments. The mechanical design is shown and a sensing system based on Hall Effect sensors is incorporated. In a simulated colon, a top speed of 1.21 mm/s was achieved, equivalent to roughly 38% of the theoretical maximum. These results are discussed and further improvements are suggested, followed by general concluding remarks.

Keywords

AnchoringNoveltyOrientation (vector space)BendingComputer scienceEndoscopeArtificial intelligenceComputer visionRobotDegrees of freedom (physics and chemistry)

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