• Journal of Innovative Optical Health Sciences
  • Vol. 16, Issue 5, 2350007 (2023)
Shichao Zhang1, Xingxin Huang1, Deyong Kang2, Jikui Miao1..., Zhenlin Zhan1, Guoxian Guan3, Jianxin Chen1, Yongjian Zhou4,* and Lianhuang Li1,**|Show fewer author(s)
Author Affiliations
  • 1Key Laboratory of OptoElectronic Science and Technology for Medicine of Ministry of Education, Fujian Provincial Key Laboratory for Photonics Technology, Fujian Normal University, Fuzhou 350007, P. R. China
  • 2Department of Pathology, Fujian Medical University Union Hospital, Fuzhou 350001, P. R. China
  • 3Department of Colorectal Surgery, The First Affiliated Hospital of Fujian Medical University, Fuzhou 350001, P. R. China
  • 4Department of Gastric Surgery, Fujian Medical University Union Hospital, Fuzhou 350001, P. R. China
  • show less
    DOI: 10.1142/S1793545823500074 Cite this Article
    Shichao Zhang, Xingxin Huang, Deyong Kang, Jikui Miao, Zhenlin Zhan, Guoxian Guan, Jianxin Chen, Yongjian Zhou, Lianhuang Li. Optical second-harmonic generation imaging for identifying gastrointestinal stromal tumors[J]. Journal of Innovative Optical Health Sciences, 2023, 16(5): 2350007 Copy Citation Text show less
    References

    [1] et alDiagnosis and management of gastrointestinal stromal tumors: An up-to-date literature review. J. Cancer Res. Ther., 13, 889-900(2017).

    [2] Current issues in gastrointestinal stromal tumors: Incidence, molecular biology, and contemporary treatment of localized and advanced disease. Curr. Opin. Gastroenterol., 23, 149-158(2007).

    [3] Endoscopic approach to subepithelial lesions. Therap. Adv. Gastroenterol., 7, 123-130(2014).

    [4] Incidence of gastrointestinal stromal tumors in the United States from 2001-2015: A United States cancer statistics analysis of 50 states. Cureus, 11, e4120(2019).

    [5] et alSmall gastrointestinal stromal tumor of the stomach showing rapid growth and early metastasis to the liver. Dig. Endosc., 22, 354-356(2010).

    [6] et alA multidisciplinary approach in the diagnostic challenge of GIST. Exp. Ther. Med., 22, 1063(2021).

    [7] Desmoplasia: A response or a niche. Cancer Discov., 2, 772-774(2012).

    [8] Desmoplasia: Not always a bad thing. Histol., 58, 643-659(2011).

    [9] Second-harmonic imaging microscopy for visualizing biomolecular arrays in cells, tissues and organisms. Nat. Biotechnol., 21, 1356-1360(2003).

    [10] Nonlinear optical imaging by detection with optical parametric amplification. J. Innov. Opt. Health Sci., 26, 2245001(2023).

    [11] et alMultimodal, label-free nonlinear optical imaging for applications in biology and biomedical science. J. Raman Spectrosc., 44, 1373-1378(2013).

    [12] et alLive tissue intrinsic emission microscopy using multiphoton-excited native fluorescence and second harmonic generation. PNAS, 100, 7075-7080(2003).

    [13] et alLabel-free assessment of premalignant gastric lesions using multimodal nonlinear optical microscopy. IEEE J. Sel. Top. Quantum Electron., 25, 1-6(2018).

    [14] et alImaging normal and cancerous human gastric muscular layer in transverse and longitudinal sections by multiphoton microscopy. Scanning, 38, 357-364(2016).

    [15] et alReal-time optical diagnosis of gastric cancer with serosal invasion using multiphoton imaging. Sci. Rep., 6, 31004(2016).

    [16] et alMultimodal multiphoton imaging for label-free monitoring of early gastric cancer. BMC Cancer, 19, 295(2019).

    [17] et alSecond harmonic generation microscopy as a powerful diagnostic imaging modality for human ovarian cancer. J. Biophoton., 7, 37-48(2014).

    [18] et alQuantitatively linking collagen alteration and epithelial tumor progression by second harmonic generation microscopy. Appl. Phys. Lett., 9, 213704(2010).

    [19] Textural features for image classification. IEEE Trans. Syst. Man Cybern. Syst., 3, 610-621(1973).

    [20] Genetic algorithm optimization of adaptive multi-scale GLCM features. Int. J. Pattern Recognit. Artif. Intell., 17, 17-39(2003).

    [21] et alEpithelial overian cancer diagnosis of second-harmonic generation images: A semiautomatic collagen fibers quantification protocal. Cancer Inf., 16, 1176935117690162(2017).

    [22] et alVisualization of lymphatic vascular invasion in breast cancer by multiphoton microscopy. Lasers Med. Sci., 36, 303-309(2021).

    [23] et alStage and histological grade of gastrointestinal stromal tumors based on a new approach are strongly associated with clinical behaviors. Mod. Pathol., 22, 556-569(2009).

    [24] et alGastrointestinal stromal tumors, intramural leiomyomas, and leiomyosarcomas in the duodenum: A clinicopathologic, immunohistochemical, and molecular genetic study of 167 cases. Am. J. Surg. Pathol., 27, 625-641(2003).

    [25] Pathology of gastrointestinal stromal tumors. Clin. Med. Insights Pathol., 5, 23-33(2012).

    [26] et alCurrent clinical management of gastrointestinal stromal tumor. World J. Gastroenterol., 24, 2806-2817(2014).

    [27] Current research and treatment for gastrointestinal stromal tumors. World J. Gastroenterol., 23, 4856-4866(2017).

    [28] et alDiagnostic imaging of gastronintestinal stromal tumor. Gastrointestinal Stromal Tumor, 49-59(2019).

    [29] et alA histopathological and immunohistochemical approach of surgical emergencies of GIST. An interdisciplinary study. Rom. J. Morphol. Embryol., 55, 619-627(2014).

    [30] et alPreoperative diagnosis of gastrointestinal stromal tumor by endoscopic ultrasound-guided fine needle aspiration. World J. Gastroenterol., 13, 2077-2082(2007).

    [31] et alLabel-free identification of early gastrointestinal neuroendocrine tumors via biomedical multiphoton microscopy and automatic image analysis. IEEE Access, 99, 105681-105689(2020).

    [32] et alLabel-free multiphoton imaging to assess neoadjuvant therapy responses in breast carcinoma. Int. J. Biol. Sci., 16, 1376-1387(2020).

    [33] et alQuantitative analysis of collagen morphology in breast cancer from millimeter scale using multiphoton microscopy. J. Innov. Opt. Health Sci.(2023). https://doi.org/10.1142/S17935458224 30039

    [34] et alObservations of intracellular second-harmonic generation imaging in black phosphorus nanosheets. J. Innov. Opt. Health Sci., 14, 2041006(2021).

    [35] et alLissajous scanning two-photon endomicroscope for in vivo tissue imaging. Sci. Rep., 9, 3560(2019).

    [36] et alMEMS-based multiphoton endomicroscope for repetitive imaging of mouse colon. Biomed. Opt. Exp., 6, 3074-3083(2015).

    [37] et alIn vivo brain imaging using a portable 2.9 g two-photon microscope based on a microelectromechanical systems scanning mirror. Opt. Lett., 34, 2309-2311(2009).

    [38] et alDevelopment of a real-time flexible multiphoton microendoscope for label-free imaging in a live animal. Sci. Rep., 5, 18303(2015).

    [39] et alMultimodal nonlinear endomicroscopic imaging probe using a double-core double-clad fiber and focus-combining micro-optical concept. Light Sci. Appl., 10, 207(2021).

    Shichao Zhang, Xingxin Huang, Deyong Kang, Jikui Miao, Zhenlin Zhan, Guoxian Guan, Jianxin Chen, Yongjian Zhou, Lianhuang Li. Optical second-harmonic generation imaging for identifying gastrointestinal stromal tumors[J]. Journal of Innovative Optical Health Sciences, 2023, 16(5): 2350007
    Download Citation