Journal of Innovative Optical Health Sciences, Volume. 9, Issue 5, 1650046(2016)

Smartphone microendoscopy for high resolution fluorescence imaging

Xiangqian Hong, Vivek K. Nagarajan, Dale H. Mugler, and Bing Yu*
Author Affiliations
  • Department of Biomedical Engineering The University of Akron Akron, Ohio 44325, USA
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    References(22)

    [1] [1] World Health Organization, "GLOBOCAN 2012: Estimated cancer incidence, mortality and prevalence worldwide in 2012," International Agency for Research on Cancer, Lyon, France, http://globocan. iarc.fr/Pages/fact sheets cancer.aspx (2014).

    [2] [2] S. Khondee, T. D. Wang, "Progress in molecular imaging in endoscopy and endomicroscopy for cancer imaging," J. Healthc. Eng. 4, 1–22 (2013).

    [3] [3] A. F. Gmitro, D. Aziz, "Confocal microscopy through a fiber-optic imaging bundle," Opt. Lett. 18, 565–567 (1993).

    [4] [4] G. Oh, E. Chung, S. H. Yun, "Optical fibers for high-resolution in vivo microendoscopic fluorescence imaging," Opt. Fiber Technol. 19, 760–771 (2013).

    [5] [5] M. K. Quinn, T. C. Bubi, M. C. Pierce, M. K. Kayembe, D. Ramogola-Masire, R. Richards-Kortum, "High-resolution microendoscopy for the detection of cervical neoplasia in low-resource settings," PLoS One 7, e44924 (2012).

    [6] [6] T. Xie, D. Mukai, S. Guo, M. Brenner, Z. Chen, "Fiber-optic-bundle-based optical coherence tomography," Opt. Lett. 30, 1803–1805 (2005).

    [7] [7] T. J. Yoon, Y. S. Cho, "Recent advances in photoacoustic endoscopy," World J. Gastrointest. Endosc. 5, 534–539 (2013).

    [8] [8] W. L. Curvers, F. G. van Vilsteren, L. C. Baak, C. Bohmer, R. C. Mallant-Hent, A. H. Naber, A. van Oijen, C. Y. Ponsioen, P. Scholten, E. Schenk, E. Schoon, C. A. Seldenrijk, G. A. Meijer, F. J. ten Kate, J. J. Bergman, "Endoscopic trimodal imaging versus standard video endoscopy for detection of early Barrett's neoplasia: A multicenter, randomized, crossover study in general practice," Gastrointest. Endosc. 73, 195–203 (2011).

    [9] [9] N. D. Parikh, D. Perl, M. H. Lee, B. Shah, Y. Young, S. S. Chang, R. Shukla, A. D. Polydorides, E. Moshier, J. Godbold, E. Zhou, J. Mitcham, R. Richards-Kortum, S. Anandasabapathy, "In vivo diagnostic accuracy of high-resolution microendoscopy in differentiating neoplastic from non-neoplastic colorectal polyps: A prospective study," Am. J. Gastroenterol. 109, 68–75 (2014).

    [10] [10] The International Telecommunication Union, "The world in 2014: ICT facts and figures," http://www. itu.int/en/ITU-D/Statistics/Pages/facts/default. aspx (2014).

    [11] [11] D. N. Breslauer, R. N. Maamari, N. A. Switz, W. A. Lam, D. A. Fletcher, "Mobile phone based clinical microscopy for global health applications," PLoS One 4, e6320 (2009).

    [12] [12] N. A. Switz, M. V. D'Ambrosio, D. A. Fletcher, "Low-cost mobile phone microscopy with a reversed mobile phone camera lens," PLoS One 9, e95330 (2014).

    [13] [13] D. Tseng, O. Mudanyali, C. Oztoprak, S. O. Isikman, I. Sencan, O. Yaglidere, A. Ozcan, "Lensfree microscopy on a cellphone," Lab Chip 10, 1787– 1792 (2010).

    [14] [14] H. Zhu, O. Yaglidere, T. W. Su, D. Tseng, A. Ozcan, "Cost-effective and compact wide-field fluorescent imaging on a cell-phone," Lab Chip 11, 315–322 (2011).

    [15] [15] C. J. Wu, S. Y. Wu, P. C. Chen, Y. S. Lin, "An innovative smartphone-based otorhinoendoscope and its application in mobile health and teleotolaryngology," J. Med. Internet Res. 16, e71 (2014).

    [16] [16] P. J. M. Jongsma, W. H. Scholly, "Device for coupling an endoscope to a videophone," U.P. Application, US 10/568,848 (2006).

    [17] [17] A. Beery, MobileOCT, "Introduction to mobileOCT's multimodal imaging," http://www.mobileoct. com/introduction-to-multimodal.html (2014).

    [18] [18] T. J. Muldoon, D. Roblyer, M. D. Williams, V. M. Stepanek, R. Richards-Kortum, A. M. Gillenwater, "Noninvasive imaging of oral neoplasia with a highresolution fiber-optic microendoscope," Head Neck 34, 305–312 (2012).

    [19] [19] T. J. Muldoon, N. Thekkek, D. Roblyer, D. Maru, N. Harpaz, J. Potack, S. Anandasabapathy, R. Richards-Kortum, "Evaluation of quantitative image analysis criteria for the high-resolution microendoscopic detection of neoplasia in Barrett's esophagus," J. Biomed. Opt. 15, 026027 (2010).

    [20] [20] M. Elter, S. Rupp, C. Winter, Physically motivated reconstruction of fiberscopic images, in ICPR 2006, 18th Int. Conf. Pattern Recognition Vol. 3. pp. 599– 602, IEEE, Hong Kong (2006).

    [21] [21] M. Pierce, D. Yu, R. Richards-Kortum, "High-resolution fiber-optic microendoscopy for in situ cellular imaging," J. Vis. Exp. 47, 2306 (2011).

    [22] [22] D. Shin, M. C. Pierce, A. M. Gillenwater, M. D. Williams, R. R. Richards-Kortum, "A fiber-optic fluorescence microscope using a consumer-grade digital camera for in vivo cellular imaging," PLoS One 5, e11218 (2010).

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    Xiangqian Hong, Vivek K. Nagarajan, Dale H. Mugler, Bing Yu. Smartphone microendoscopy for high resolution fluorescence imaging[J]. Journal of Innovative Optical Health Sciences, 2016, 9(5): 1650046

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    Paper Information

    Received: Feb. 2, 2016

    Accepted: May. 27, 2016

    Published Online: Dec. 27, 2018

    The Author Email: Yu Bing (byu@uakron.edu)

    DOI:10.1142/s1793545816500462

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