## Abstract Raman spectroscopy is a vibrational spectroscopic technique that can be used to optically probe the molecular changes associated with diseased tissues. The objective of our study was to explore nearβinfrared (NIR) Raman spectroscopy for distinguishing tumor from normal bronchial tissue.
Near-infrared Raman spectroscopy for gastric precancer diagnosis
β Scribed by Seng Khoon Teh; Wei Zheng; Khek Yu Ho; Ming Teh; Khay Guan Yeoh; Dr. Zhiwei Huang
- Publisher
- John Wiley and Sons
- Year
- 2009
- Tongue
- English
- Weight
- 160 KB
- Volume
- 40
- Category
- Article
- ISSN
- 0377-0486
- DOI
- 10.1002/jrs.2197
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β¦ Synopsis
Abstract
Raman spectroscopy is a molecular vibrational spectroscopic technique that is capable of optically probing the biomolecular changes associated with neoplastic transformation. The purpose of this study was to apply nearβinfrared (NIR) Raman spectroscopy for differentiating dysplasia from normal gastric mucosa tissue. A total of 65 gastric mucosa tissues (44 normal and 21 dysplasia) were obtained from 35 patients who underwent endoscopy investigation or gastrectomy operation for this study. A rapid NIR Raman system was utilized for tissue Raman spectroscopic measurements at 785βnm laser excitation. Highβquality Raman spectra in the range of 800β1800 cm^β1^ can be acquired from gastric mucosa tissue within 5 s. Raman spectra showed significant differences between normal and dysplastic tissue, particularly in the spectral ranges of 850β1150, 1200β1500 and 1600β1750 cm^β1^, which contained signals related to proteins, nucleic acids and lipids. The diagnostic decision algorithm based on the combination of Raman peak intensity ratios of I~875~/I~1450~ and I~1208~/I~1655~ and the logistic regression analysis yielded a diagnostic sensitivity of 90.5% and specificity of 90.9% for identification of gastric dysplasia tissue. This work demonstrates that NIR Raman spectroscopy in conjunction with intensity ratio algorithms has the potential for the noninvasive diagnosis and detection of precancer in the stomach at the molecular level. Copyright Β© 2009 John Wiley & Sons, Ltd.
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