DocumentCode :
47510
Title :
OdoCapsule: Next-Generation Wireless Capsule Endoscopy With Accurate Lesion Localization and Video Stabilization Capabilities
Author :
Karargyris, Alexandros ; Koulaouzidis, Anastastios
Author_Institution :
Nat. Libr. of Med. Nat. Inst. of Health, Bethesda, MD, USA
Volume :
62
Issue :
1
fYear :
2015
fDate :
Jan. 2015
Firstpage :
352
Lastpage :
360
Abstract :
In this paper, we propose a platform to achieve accurate localization of small-bowel lesions and endoscopic video stabilization in wireless capsule endoscopy. Current research modules rely on the use of external magnetic fields and triangulation methods to calculate the position vector of the capsule, leading to considerable error margins. Our platform, entitled OdoCapsule (a synthesis of the words Odometer and Capsule), provides real-time distance information from the point of duodenal entry to the point of exit from the small bowel. To achieve this, OdoCapsule is equipped with three miniature legs. Each leg carries a soft rubber wheel, which is made with human-compliant material. These legs are extendable and retractable thanks to a micromotor and three custom-made torsion springs. The wheels are specifically designed to function as microodometers: each rotation they perform is registered. Hence, the covered distance is measured accurately in real time. Furthermore, with its legs fully extended, OdoCapsule can stabilize itself inside the small-bowel lumen thus offering smoother video capture and better image processing. Recent ex vivo testing of this concept, using porcine small bowel and a commercially available (custom-modified) capsule endoscope, has proved its viability.
Keywords :
bioMEMS; biological organs; biological tissues; biomechanics; biomedical optical imaging; biomedical telemetry; body sensor networks; data acquisition; distance measurement; endoscopes; image registration; medical control systems; medical image processing; micromotors; telemedicine; torsion; wheels; OdoCapsule miniature leg; OdoCapsule soft rubber wheel; OdoCapsule stabilization; OdoCapsule wheel design; capsule position vector calculation; commercially available capsule endoscope; custom-made torsion spring; custom-modified capsule endoscope; duodenal entry; duodenal exit point; endoscopic video stabilization capability; error margin; ex vivo porcine small bowel testing; extendable leg; external magnetic field; human-compliant material; image processing; lesion localization accuracy; micromotor; microodometer rotation registration; next-generation wireless capsule endoscopy; real-time distance information; real-time distance measurement; research module; retractable leg; small-bowel lesion; small-bowel lumen; smooth video capture; triangulation method; Endoscopes; Force; Friction; Legged locomotion; Lesions; Springs; Wheels; Biomedical imaging; CMOS image sensors; RF transmitter; capsule endoscopy (CE); distance measurement; endoscopes; microcontroller; micromotors; odometer; video stabilization;
fLanguage :
English
Journal_Title :
Biomedical Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9294
Type :
jour
DOI :
10.1109/TBME.2014.2352493
Filename :
6884802
Link To Document :
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