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Use of hyperspectral/multispectral imaging in gastroenterology. Shedding some–different–light into the dark

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Auteur
Ortega S., Fabelo H., Iakovidis D.K., Koulaouzidis A., Callico G.M.
Date
2019
Language
en
DOI
10.3390/jcm8010036
Sujet
adenomatous polyp
anastomosis
blood flow
blood volume
colorectal surgery
gastroenterology
histopathology
hyperspectral imaging
imaging
intestine ischemia
kidney failure
metastasis
multispectral imaging
near infrared spectroscopy
peripheral occlusive artery disease
peroperative cholangiography
pollution monitoring
remote sensing
Review
sensitivity and specificity
sepsis
stomach cancer
tissue interaction
white light endoscopy
MDPI
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Résumé
Hyperspectral/Multispectral imaging (HSI/MSI) technologies are able to sample from tens to hundreds of spectral channels within the electromagnetic spectrum, exceeding the capabilities of human vision. These spectral techniques are based on the principle that every material has a different response (reflection and absorption) to different wavelengths. Thereby, this technology facilitates the discrimination between different materials. HSI has demonstrated good discrimination capabilities for materials in fields, for instance, remote sensing, pollution monitoring, field surveillance, food quality, agriculture, astronomy, geological mapping, and currently, also in medicine. HSI technology allows tissue observation beyond the limitations of the human eye. Moreover, many researchers are using HSI as a new diagnosis tool to analyze optical properties of tissue. Recently, HSI has shown good performance in identifying human diseases in a non-invasive manner. In this paper, we show the potential use of these technologies in the medical domain, with emphasis in the current advances in gastroenterology. The main aim of this review is to provide an overview of contemporary concepts regarding HSI technology together with state-of-art systems and applications in gastroenterology. Finally, we discuss the current limitations and upcoming trends of HSI in gastroenterology. © 2019 by the authors. Licensee MDPI, Basel, Switzerland.
URI
http://hdl.handle.net/11615/77402
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