Infrared and Laser Engineering, Volume. 53, Issue 9, 20240337(2024)
Advances in early cancer detection enabled by computational scattering spectroscopy (invited)
[1] M ARNOLD, C C ABNET, R E NEALE et al. Global burden of 5 major types of gastrointestinal cancer. Gastroenterology, 159, 335-349(2020).
[2] B QUMSEYA, S SULTAN, P BAIN et al. ASGE guideline on screening and surveillance of Barrett's esophagus. Gastrointest Endosc, 90, 335-359.(2019).
[4] V SUBRAMANIAN, K RAGUNATH. Advanced endoscopic imaging: a review of commercially available technologies. Clin Gastroenterol Hepatol, 12, 368-376.(2014).
[8] I SINGH, T P LELE. Nuclear morphological abnormalities in cancer: a search for unifying mechanisms. Results Probl Cell Differ, 70, 443-467(2022).
[13] M J COSSENTINO, R K WONG. Barrett's esophagus and risk of esophageal adenocarcinoma. Semin Gastrointest Dis, 14, 128-135(2003).
[17] J DAWSON, D BARKER, D ELLIS et al. A theoretical and experimental study of light absorption and scattering by in vivo skin. Physics in Medicine & Biology, 25, 695-709(1980).
[20] [20] MOURANT J R, BOYER J D, JOHNSON T M, et al. Detection of gastrointestinal cancer by elastic scattering absption spectroscopies with the Los Alamos Optical Biopsy System[C]Advances in Laser Light Spectroscopy to Diagnose Cancer Other Diseases II, 1995: 210217.
[23] J PATON. The scattering of light by small particles. Nature, 182, 1470-1471(1958).
[24] [24] MINCU N, BARTLETT M, JIANG H. Particle sizing in twolayer turbid media using polarized light[C]SPIE, 2001, 4261: 424527.
[25] R BRO, Jong S DE. A fast non‐negativity‐constrained least squares algorithm. Journal of Chemometrics: A Journal of the Chemometrics Society, 11, 393-401(1997).
[29] S SIVANANDAM, S DEEPA, S SIVANANDAM et al. Genetic algorithm optimization problems. Introduction to Genetic Algorithms, 165-209(2008).
[49] W Y KENDALL, Q TIAN, S ZHAO et al. Deep learning classification of ex vivo human colon tissues using spectroscopic optical coherence tomography. J Biophotonics, e202400082(2024).
[50] A WAX, C YANG, M G MÜLLER et al. In situ detection of neoplastic transformation and chemopreventive effects in rat esophagus epithelium using angle-resolved low-coherence interferometry. Cancer Res, 63, 3556-3559(2003).
[61] C J SHEIL, U KHAN, Y N ZAKHAROV et al. Two-photon polymerization nanofabrication of ultracompact light scattering spectroscopic probe for detection of pre-cancer in pancreatic cyst. Optics and Lasers in Engineering, 142, 106616(2021).
[62] L QIU, L ZHANG, V TURZHITSKY et al. Multispectral endoscopy with light gating for early cancer detection. IEEE J Sel Top Quantum Electron, 25, 7201309(2019).
[66] Y WEI, F LIU, K YANG et al. Passive underwater polarization imaging detection method in neritic area. Acta Physica Sinica-Chinese Edition, 67, 1(2018).
[67] L HAIBO, J ZHANG, X GAI et al. Development status and prospects of polarization imaging technology (
[74] L QIU, R CHUTTANI, D K PLESKOW et al. Multispectral light scattering endoscopic imaging of esophageal precancer. Light: Science & Applications, 7, 17174(2018).
[75] A TUNIYAZI, T MU, X JIANG et al. Snapshot polarized light scattering spectrometric fiberscopy for early cancer detection. Laser & Photonics Reviews, 2400486(2024).
Get Citation
Copy Citation Text
Tingkui MU, Abudusalamu TUNIYAZI, Bin QIN, Yan CHENG. Advances in early cancer detection enabled by computational scattering spectroscopy (invited)[J]. Infrared and Laser Engineering, 2024, 53(9): 20240337
Category: Special issue—Computational optical imaging and application Ⅱ
Received: Jun. 11, 2024
Accepted: --
Published Online: Oct. 22, 2024
The Author Email: