DocumentCode :
1072619
Title :
Tethered Capsule Endoscopy, A Low-Cost and High-Performance Alternative Technology for the Screening of Esophageal Cancer and Barrett´s Esophagus
Author :
Seibel, Eric J. ; Carroll, Robert E. ; Dominitz, Jason A. ; Johnston, Richard S. ; Melville, C. David ; Lee, Cameron M. ; Seitz, Steven M. ; Kimmey, Michael B.
Author_Institution :
Washington Univ., Seattle
Volume :
55
Issue :
3
fYear :
2008
fDate :
3/1/2008 12:00:00 AM
Firstpage :
1032
Lastpage :
1042
Abstract :
Esophageal cancer is currently the fastest growing cancer in the United States. To help combat the recent rise in morbidity, our laboratory has developed a low-cost tethered capsule endoscope system (TCE) aimed at improving early detection of esophageal cancer. The TCE contains a resonant fiberoptic laser scanner (1.6 mm O.D.) which fits into 6.4-mm easy-to-swallow capsule at the distal tip. The tethered portion contains a single mode optical fiber multiplexed to three laser diodes at the proximal end. This design offers two main advantages over current endoscope technology. First, because of its small size, the TCE can be swallowed with minimal patient discomfort, thereby obviating sedation. Second, by imaging via directed laser light, the TCE is strategically positioned to employ several burgeoning laser-based diagnostic technologies, such as narrow-band, hyperspectral, and fluorescence imaging. It is believed that the combination of such imaging techniques with novel biomarkers of dysplasia will greatly assist in identifying precancerous conditions such as Barrett´s esophagus (BE). As the probe is swallowed, the fiber scanner captures high resolution, wide-field color images of the gastroesophageal junction (500 lines at 0.05-mm resolution) currently at 15-Hz frame rate. Video images are recorded as the capsule is slowly retracted by its tether. Accompanying software generates panoramic images from the video output by mosaicing individual frames to aid in pattern recognition. This initial report describes the rationale for the unique TCE system design, results from preliminary testing in vitro and in vivo, and discussion on the merits of this new platform technology as a basis for developing a low-cost screening program for esophageal cancer.
Keywords :
cancer; endoscopes; fibre lasers; fibre optic sensors; patient diagnosis; Barrett´s esophagus; United States; biomarkers; cancer detection; esophageal cancer; fiberoptic laser scanner; laser diodes; tethered capsule endoscopy; Cancer; Endoscopes; Esophagus; Fiber lasers; High-resolution imaging; Hyperspectral imaging; Image resolution; Laser modes; Optical fibers; Optical imaging; Biomedical image processing; biomedical imaging; cancer; medical diagnosis; optical imaging; Algorithms; Barrett Esophagus; Biotechnology; Capsule Endoscopes; Equipment Design; Equipment Failure Analysis; Esophageal Neoplasms; Humans; Image Enhancement; Image Interpretation, Computer-Assisted; Mass Screening; Reproducibility of Results; Sensitivity and Specificity;
fLanguage :
English
Journal_Title :
Biomedical Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9294
Type :
jour
DOI :
10.1109/TBME.2008.915680
Filename :
4454054
Link To Document :
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