• Journal of Innovative Optical Health Sciences
  • Vol. 3, Issue 4, 255 (2010)
PAUL LEMAILLET1, DONALD D. DUNCAN2, ART LOMPADO3, MOHAMED IBRAHIM4, QUAN DONG NGUYEN4, and JESSICA C. RAMELLA-ROMAN1
Author Affiliations
  • 1Department of Biomedical Engineering The Catholic University of America 620 Michigan Ave., N.E., Washington, DC 20064, USA
  • 2ECE Department, Portland State University 1900 SW Fourth Avenue, Portland, OR 97201, USA
  • 3Polaris Sensor Technologies, 200 Westside Square Suite 320 Huntsville, AL 35801, USA
  • 4Wilmer Eye Institute, Johns Hopkins University Baltimore, MD 21287, USA
  • show less
    DOI: 10.1142/s1793545810001131 Cite this Article
    PAUL LEMAILLET, DONALD D. DUNCAN, ART LOMPADO, MOHAMED IBRAHIM, QUAN DONG NGUYEN, JESSICA C. RAMELLA-ROMAN. RETINAL SPECTRAL IMAGING AND BLOOD FLOW MEASUREMENT[J]. Journal of Innovative Optical Health Sciences, 2010, 3(4): 255 Copy Citation Text show less
    References

    [1] N. D. Wangsa-Wirawan, R. A. Linsenmeier, “Retinal oxygen: Fundamental and clinical aspects,” Arch. Ophthalmol. 121, 547–557 (2003).

    [2] Q. D. Nguyen, S. M. Shah, E. V. Anden, J. U. Sung, S. Vitale, P. A. Campochiaro, “Supplemental oxygen improves diabetic macular edema: A pilot study,” Invest. Ophthalmol. Vis. Sci. 45, 617–624 (2004).

    [3] E. Kohner, V. Patel, S. Rassam, “Role of blood flow and impaired autoregulation in the pathogenesis of diabetic retinopathy,” Diabetes 44, 603–607 (1995).

    [4] J. Ramella-Roman, S. Mathews, “Spectroscopic measurements of oxygen saturation in the retina,” IEEE Journal of Selected Topics in Quantum Electronics 13, 1697–1703 (2007).

    [5] W. R. Johnson, D. W. Wilson, W. Fink, G. Humayun, Mark and Bearman, “Snapshot hyperspectral imaging in ophthalmology,” J. Biomed. Opt. 12, 014036 (2007).

    [6] M. Hammer, W. Vilser, T. Riemer, D. Schweitzer, “Retinal vessel oximetry-calibration, compensation for vessel diameter and fundus pigmentation, and reproducibility,” J. Biomed. Opt. 13, 054015 (2008).

    [7] S. H. Hardarson, M. S. Gottfredsdottir, G. H. Halldorsson, R. A. Karlsson, J. A. Benediktsson, T. Eysteinsson, J. M. Beach, A. Harris, E. Stefansson, “Glaucoma filtration surgery and retinal oxygen saturation,” Invest. Ophthalmol. Vis. Sci. 50, 5247–5250 (2009).

    [8] S. H. Hardarson, S. Basit, T. E. Jonsdottir, T. Eysteinsson, G. H. Halldorsson, R. A. Karlsson, J. M. Beach, J. A. Benediktsson, E. Stefansson, “Oxygen saturation in human retinal vessels is higher in dark than in light,” Invest. Ophthalmol. Vis. Sci. 50, 2308–2311 (2009).

    [9] C. E. Riva, “Basic principles of laser Doppler flowmetry and application to the ocular circulation,” Int. Ophthalmol. 28, 183–189 (2001).

    [10] C. E. Riva, B. L. Petrig, R. D. Shonat, C. J. Pournaras, “Scattering process in ldv from retinal vessels,” Appl. Opt. 28, 1078–1083 (1989).

    [11] M. J. Mendel, V. V. Toi, C. E. Riva, B. L. Petrig, “Eye-tracking laser Doppler velocimeter stabilized in two dimensions: Principle, design, and construction,” J. Opt. Soc. Am. A 10, 1663–1669 (1993).

    [12] N. Konishi, H. Fujii, “Real-time visualization of retinal microcirculation by laser flowgraphy,” Opt. Eng. 34, 753–757 (1995).

    [13] H. Cheng, Y. Yan, T. Q. Duong, “Temporal statistical analysis of laser speckle images and its application to retinal blood-flow imaging,” Opt. Express 16, 10214–10219 (2008).

    [14] D. D. Duncan, S. J. Kirkpatrick, “Can laser speckle flowmetry be made a quantitative tool ” J. Opt. Soc. Am. A 25, 2088–2094 (2008).

    [15] P. Lemaillet, J. C. Ramella-Roman, “Dynamic eye phantom for retinal oximetry measurements,” J. Biomed. Opt. 14, 064008 (2009).

    [16] M. Hammer, A. Roggan, D. Schweitzer, G. M¨uller, “Optical properties of ocular fundus tissues — An in vitro study using the double-integrating-sphere technique and inverse Monte Carlo simulation,” Phys. Med. Biol. 40, 963–978 (1995).

    [17] S. J. Preece, E. Claridge, “Monte Carlo modelling of the spectral reflectance of the human eye,” Phys. Med. Biol. 47, 2863–2877 (2002).

    [18] H. M. Sarna, “The physical properties of melanins,” in The Pigmentary System, R. E. Nordlund, V. J. Hearing, R. A. King, J. P. Ortonne, eds., Oxford University Press, pp. 439–450 (1998).

    [19] J. M. Fitts, “Precision correlation tracking via optimal weighting functions,” 18, 280–283 (1979).

    [20] L. Stephan, J. E. Albus, J. R. Marcovici, “Fitts correlation tracker fidelity in presence of target translation, rotation, and size change,” SPIE 4714, 196– 207 (2002).

    [21] S. Wong, “Advanced correlation tracking of objects in cluttered imagery,” SPIE 5810, 158–169 (2005).

    [22] D. D. Duncan, P. Lemaillet, M. Ibrahim, Q. D. Nguyen, M. Hiller, J. C. Ramella-Roman, “Absolute blood velocity measured with a modified fundus camera,” J. Biomed. Opt., to be published.

    [23] T. Moffitt, Y.-C. Chen, S. A. Prahl, “Preparation and characterization of polyurethane optical phantoms,” J. Biomed. Opt. 11, 041103 (2006).

    [24] S. A. Prahl, “The adding-doubling method,” in Optical-Thermal Response of Laser Irradiated Tissue, A. J. Welch, M. J. C. van Gemert, eds. Plenum Press, Chap. 5, pp. 101–129 (1995).

    [25] L. Wang, S. L. Jacques, L. Zheng, “Mcml–Monte Carlo modeling of light transport in multilayered tissues,” Computer Meth. Prog. Biomed. 47, 131–146 (1995).

    [26] N. Rajaram, T. H. Nguyen, J. W. Tunnell, “Lookup table-based inverse model for determining optical properties of turbid media,” J. Biomed. Opt. 13, 050501 (2008).

    PAUL LEMAILLET, DONALD D. DUNCAN, ART LOMPADO, MOHAMED IBRAHIM, QUAN DONG NGUYEN, JESSICA C. RAMELLA-ROMAN. RETINAL SPECTRAL IMAGING AND BLOOD FLOW MEASUREMENT[J]. Journal of Innovative Optical Health Sciences, 2010, 3(4): 255
    Download Citation