TY - JOUR
T1 - Rapid fiber-optic raman spectroscopy for real-time in vivo detection of gastric intestinal metaplasia during clinical gastroscopy
AU - Lin, Kan
AU - Wang, Jianfeng
AU - Zheng, Wei
AU - Ho, Khek Yu
AU - Teh, Ming
AU - Yeoh, Khay Guan
AU - Huang, Zhiwei
N1 - Publisher Copyright:
©2016 AACR.© 2016 American Association for Cancer Research.
PY - 2016/6
Y1 - 2016/6
N2 - We report a unique simultaneous fingerprint (FP) and highwavenumber (HW) Raman spectroscopy technique coupled with a beveled fiber-optic Raman probe for improving in vivo detection of gastric intestinal metaplasia (IM)-precancerous lesions in realtime during clinical gastroscopy. A total of 4,520 high-quality in vivo FP/HW gastric Raman spectra (normal = 4,178; IM =342) were acquired from 157 gastric patients undergoing endoscopic examination. Multivariate diagnostic algorithms based on principal components analysis and linear discriminant analysis together with the leave-one tissue site-out, cross-validation on in vivo tissue Raman spectra yield the diagnostic sensitivities of 89.3%, 89.3%, and 75.0%; specificities of 92.2%, 84.4%, and 82.0%; positive predictive values of 52.1%, 35.2%, and 28.4%; and negative predictive values of 98.9%, 98.8%, and 97.2%, respectively, by using the integrated FP/HW, FP, and HW Raman techniques for identifying IM from normal gastric tissue. Further, ROC curves generated show that the integrated FP/HW Raman technique gives the integration area under the ROC curve of 0.92 for IM classification, which is superior to either FP (0.89) or HW Raman (0.86) technique alone. This work demonstrates for the first time that the simultaneous FP/HW fiber-optic Raman spectroscopy has great potential to enhance early diagnosis of gastric precancer in vivo during routine endoscopic examination. Cancer Prev Res; 9(6); 476-83.
AB - We report a unique simultaneous fingerprint (FP) and highwavenumber (HW) Raman spectroscopy technique coupled with a beveled fiber-optic Raman probe for improving in vivo detection of gastric intestinal metaplasia (IM)-precancerous lesions in realtime during clinical gastroscopy. A total of 4,520 high-quality in vivo FP/HW gastric Raman spectra (normal = 4,178; IM =342) were acquired from 157 gastric patients undergoing endoscopic examination. Multivariate diagnostic algorithms based on principal components analysis and linear discriminant analysis together with the leave-one tissue site-out, cross-validation on in vivo tissue Raman spectra yield the diagnostic sensitivities of 89.3%, 89.3%, and 75.0%; specificities of 92.2%, 84.4%, and 82.0%; positive predictive values of 52.1%, 35.2%, and 28.4%; and negative predictive values of 98.9%, 98.8%, and 97.2%, respectively, by using the integrated FP/HW, FP, and HW Raman techniques for identifying IM from normal gastric tissue. Further, ROC curves generated show that the integrated FP/HW Raman technique gives the integration area under the ROC curve of 0.92 for IM classification, which is superior to either FP (0.89) or HW Raman (0.86) technique alone. This work demonstrates for the first time that the simultaneous FP/HW fiber-optic Raman spectroscopy has great potential to enhance early diagnosis of gastric precancer in vivo during routine endoscopic examination. Cancer Prev Res; 9(6); 476-83.
UR - http://www.scopus.com/inward/record.url?scp=84973160647&partnerID=8YFLogxK
U2 - 10.1158/1940-6207.CAPR-15-0213
DO - 10.1158/1940-6207.CAPR-15-0213
M3 - Article
C2 - 27034388
AN - SCOPUS:84973160647
SN - 1940-6207
VL - 9
SP - 476
EP - 483
JO - Cancer Prevention Research
JF - Cancer Prevention Research
IS - 6
ER -