• Acta Photonica Sinica
  • Vol. 48, Issue 6, 611001 (2019)
CHEN Peng1、*, JIANG Lei2, WANG Hai-xia1, SUN Hao-hao2, ZHANG Yi-long2, and LIANG Rong-hua1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3788/gzxb20194806.0611001 Cite this Article
    CHEN Peng, JIANG Lei, WANG Hai-xia, SUN Hao-hao, ZHANG Yi-long, LIANG Rong-hua. Fingerprint Anti-counterfeiting Method Based on Optical Coherence Tomography and Optical Micro-angiography[J]. Acta Photonica Sinica, 2019, 48(6): 611001 Copy Citation Text show less
    References

    [1] PRABHAKAR S, PANKANTI S, JAIN A K. Biometric recognition: security and privacy concerns[J]. IEEE Security & Privacy, 2003, 99(2): 33-42.

    [2] MALTON D. Handbook of fingerprint recognition[J].Ch Synthetic Fingerprint Generation, 2005, 33(5-6): 1314-1318.

    [3] ENGELSMA J J, ARORA S S, JAIN A K, et al. Universal 3D wearable fingerprint targets: advancing fingerprint reader evaluations[J]. IEEE Transactions on Information Forensics & Security, 2018, 13(6): 1564-1578.

    [4] HOSSAM H, HYUNG W K. CMOS capacitive fingerprint sensor based on differential sensing circuit with noise cancellation[J]. Sensors, 2018, 18(7): 2200-2217.

    [5] VASUKI M. Finger vein recognition and authentication system[J]. International Journal of Engineering Sciences & Research Technology, 2014, 3(4): 4037-4041.

    [6] NAM H S, YOO H. Spectroscopic optical coherence tomography: a review of concepts and biomedical applications[J]. Applied Spectroscopy Reviews, 2018, 53(2): 91-111.

    [7] TOMLINS P H, WANG R K. Theory, developments and applications of optical coherence tomography[J]. Journal of Physics D-applied Physics, 2005, 38(15): 2519-2535.

    [8] CAI Xia-mei, LI Hui, CHEN Hai-yu, et al. Optical coherence tomography in early acute myocardial ischemia in rats[J]. Acta Photonica Sinica, 2009, 37(2): 180-183.

    [9] DIMITROVA G, CHIHARA E, TAKAHASHII H, et al. Quantitative retinal optical coherence tomography angiography in patients with diabetes without diabetic retinopathy[J]. Investigative Ophthalmology & Visual Science, 2017, 58(1): 190-196.

    [10] PODDAR R, WERNER J S. Implementations of three OCT angiography (OCTA) methods with 1.7 MHz A-scan rate OCT system on imaging of human retinal and choroidal vasculature[J]. Optics & Laser Technology, 2018, 102(6): 130-139.

    [11] CHEN Yan-ping, LI Chun-bin, WANG Xiao-ling. Optical imaging methods for early detection of osteoarthritis[J]. Acta Photonica Sinica, 2014, 43(S1): 172-175.

    [12] HOSSAIN M A, NAMIHIRA Y, RAZZAKS M A, et al. Design of all normal dispersion highly nonlinear photonic crystal fibers for supercontinuum light sources: Applications to optical coherence tomography systems[J]. Optics and Laser Technology, 2012, 44(4): 976-980.

    [13] WANG R K, JACQUER S L, MA Z,et al. Three dimensional optical angiography[J]. Optics Express, 2007, 15(7): 4083-4097.

    [14] WANG R K. Optical micro angiography: a label-free 3-D imaging technology to visualize and quantify blood circulations within tissue beds in vivo[J]. IEEE Journal of Selected Topics in Quantum Electronics, 2010, 16(3): 545-554.

    [15] WANK R K. Optical micro angiography provides depth-resolved images of directional ocular blood perfusion in posterior eye segment[J]. Journal of Biomedical Optics, 2010, 15(2): 1-3.

    [16] WANG R K, HURST S. Mapping of cerebro-vascular blood perfusion in mice with skin and skull intact by optical micro-angiography at 1.3 mum wavelength[J]. Optics Express, 2007, 15(18): 11402-12.

    [17] AN L, WANG R K. In vivo volumetric imaging of vascular perfusion within humanretina and choroids with optical micro-angiography[J]. Optics Express, 2008, 16(15): 11438-11452.

    [18] BARAN U, LI Yuan-dong, CHOI W J, et al. High resolution imaging of acne lesion development and scarring in human facial skin using OCT-based micro-angiography[J]. Lasers in Surgery and Medicine, 2015, 47(3): 231-238.

    [19] LARIN K V, CHENG Ye-zeng. Artificial fingerprint recognition by using optical coherence tomography with autocorrelation analysis[J]. Applied Optics, 2006, 45(36): 9238-9245.

    [20] AUM J, KIM J H, JEONG J. Live acquisition of internal fingerprint with automated detection of subsurface layers using OCT[J]. IEEE Photonics Technology Letters, 2015, 28(2): 163-166.

    [21] DARLOW, LUKE N, WEBB L, et al. Automated spoof-detection for fingerprints using optical coherence tomography[J]. Applied Optics, 2016, 55(13): 3387-3396.

    [22] LIU Xuan, FARZANA Z, WANG Ya-hui, et al. Secure fingerprint identification based on structural and microangiographic optical coherence tomography[J]. Applied Optics, 2017, 56(8): 2255-2260.

    [23] GAO Feng, FAN Jin-yu, KONG Wen, et al. Research progress of optical coherence tomography in vascular flow field detection[J]. Chinese Journal of Lasers, 2018, 45(2): 7019-7032.

    [24] BEDROSIAN E. A product theorem for Hilbert transforms[J]. Proceedings of the IEEE, 2005, 51(5): 868-869.

    [25] AN L, QIN Jia, WANG R K. Ultrahigh sensitive optical microangiography for in vivo imaging of microcirculations within human skin tissue beds[J]. Optics Express, 2010, 18(8): 8220-8228.

    CHEN Peng, JIANG Lei, WANG Hai-xia, SUN Hao-hao, ZHANG Yi-long, LIANG Rong-hua. Fingerprint Anti-counterfeiting Method Based on Optical Coherence Tomography and Optical Micro-angiography[J]. Acta Photonica Sinica, 2019, 48(6): 611001
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