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Robot-assisted magnetic capsule endoscopy; navigating colorectal inclinations. | LitMetric

AI Article Synopsis

  • - The study explores how a robot-assisted wireless capsule endoscope (WCE) interacts with colonic tissue while moving through bends in the colon, using feedback from a 3D accelerometer.
  • - Researchers utilized a 3D printed incline model lined with pig colon to test how factors like the capsule’s tilt angle and shell geometry affect its movement and interaction with the tissue.
  • - Results showed that matching the tilt angle of the WCE to the incline decreased friction and improved locomotion, with additional benefits from using water insufflation and an elliptical capsule design.

Article Abstract

To investigate the interaction of a robot assisted magnetically driven wireless capsule endoscope (WCE) with colonic tissue, as it traverses the colorectal bends in the dorsal and ventral directions, relying only on the feedback from a 3D accelerometer. We also investigate the impact of shell geometry and water insufflation on WCE locomotion. A 3D printed incline phantom, lined with porcine colon, was used as the experimental platform, for controlled and repeatable results. The tilt angle of WCE was controlled to observe its influence on WCE locomotion. The phantom was placed underwater to observe the effects of water insufflation. The experiments were repeated using the two capsule shell geometries to observe the effect of shell geometry on WCE locomotion. Friction between WCE and intestinal tissue increased when the tilt angle of the WCE was lower than the angle of the incline of the phantom. Increasing the WCE tilt angle to match the angle of the incline reduced this friction. Water insufflation and elliptical capsule shell geometry reduced the friction further. Tilting of the WCE equal to, or more than the angle of the incline improved the WCE locomotion. WCE locomotion was also improved by using elliptical capsule shell geometry and water insufflation. CRC: colorectal cancer; GI: gastrointestinal; MRI: magnetic resonance imaging; WCE: wireless capsule endoscope.

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Source
http://dx.doi.org/10.1080/13645706.2022.2032181DOI Listing

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