• Journal of Innovative Optical Health Sciences
  • Vol. 1, Issue 1, 17 (2008)
MARCO RUGGERI1, HASSAN WEHBE1, GAVRIIL TSECHPENAKIS2, SHULIANG JIAO1、*, MARIA ELENA JOCKOVICH1, COLLEEN CEBULLA1, ELEUT HERNANDEZ1, TIMOTHY G. MURRAY1, and CARMEN A. PULIAFITO1
Author Affiliations
  • 1Bascom Palmer Eye Institute University of Miami Miller School of Medicine 1638 NW 10th Ave. Miami, FL 33136, USA
  • 2Electrical and Computer Engineering Department University of Miami, 1251 Memorial Dr Coral Gables, FL 33124, USA
  • show less
    DOI: Cite this Article
    MARCO RUGGERI, HASSAN WEHBE, GAVRIIL TSECHPENAKIS, SHULIANG JIAO, MARIA ELENA JOCKOVICH, COLLEEN CEBULLA, ELEUT HERNANDEZ, TIMOTHY G. MURRAY, CARMEN A. PULIAFITO. QUANTITATIVE EVALUATION OF RETINAL TUMOR VOLUME IN MOUSE MODEL OF RETINOBLASTOMA BY USING ULTRA HIGH-RESOLUTION OPTICAL COHERENCE TOMOGRAPHY[J]. Journal of Innovative Optical Health Sciences, 2008, 1(1): 17 Copy Citation Text show less
    References

    [1] A. Tamboli, M. J. Podgor and J. W. Horm, “The incidence of retinoblastoma in the United States: 1974 through 1985,” Archives Ophthalmology 108, 128–132 (1990).

    [2] T. W. Pendergrass, S. Davis, “Incidence of retinoblastoma in the United States,” Archives Ophthalmology 98, 1204–1210 (1980).

    [3] D. Huang, E. A. Swanson, C. P. Lin, J. S. Schuman, W. G. Stinson, W. Chang, M. R. Hee, T. Flotte, K. Gregory, C. A. Puliafito and J. G. Fujimoto, “Optical coherence tomography,” Science 254, 1178–1181 (1991).

    [4] A. F. Fercher, C. K. Hitzenberger, G. Kamp and S. Y. El-Zaiat. “Measurement of intraocular distances by backscattering spectral interferometry,” Optics Communications 117, 43–48 (1995).

    [5] Q. Li, A. M. Timmers, K. Hunter, C. Gonzalez-Pola, A. S. Lewin, D. H. Reitze, W. W. Hauswirth, “Noninvasive imaging by optical coherence tomography to monitor Retinal Degeneration in the mouse,” Investigative Ophthalmology & Visual Science 42, 2981–2989 (2001).

    [6] N. Horio, S. Kachi, K. Hori, Y. Okamoto, E. Yamamoto, H. Terasaki and Y. Miyake, “Progressive change of optical coherence tomography scans in retinal degeneration slow mice,” Archives Ophthalmology 119, 1329–1332 (2001).

    [7] I. Hartl, T. Ko, R. K. Ghanta,W. Drexler, A. Clermont, S. E. Bursell and J. G. Fujimoto, “In vivo ultrahigh resolution optical coherence tomography for the quantification of retinal structure in normal and transgenic mice,” Investigative Ophthalmology & Visual Science 42, S793, 2001 (ARVO Abstract #4252).

    [8] S. M. Shah, E. L. e Silva, Y. Salshin, S. F. Hackett, F.Woreta and P. A. Campochiaro, “Comparison of retinal thickness of mice retina with stratus OCT and histology,” ARVO Abstract #2375, Fort Lauderdale (2004).

    [9] K. Kim, G. N. Maguluri, M. Puorishaag, Y. Umino, R. B. Barlow, J. F. De Boer, “Optical coherence tomography for mouse retinal imaging,” ARVO Abstract #2923, Fort Lauderdale (2006).

    [10] V. J. Srinivasan, T. H. Ko, M. Wojtkowski, M. Carvalho, A. Clermont, S. E. Bursell, Q. H. Song, J. Lem, J. S. Duker, J. S. Schuman and J. G. Fujimoto, “Noninvasive volumetric imaging and morphometry of the rodent retina with high-speed, ultra high-resolution optical coherence tomography,” Investigative Ophthalmology & Visual Science 47, 5522–5528 (2006).

    [11] M. Ruggeri, H. Wehbe, S. Jiao, G. Gregori, M. E. Jockovich, A. Hackam, Y Duan and C.A. Puliafito, “In vivo three-dimensional high-resolution imaging of rodent retina with spectral-domain optical coherence tomography,” Investigative Ophthalmology & Visual Science 48, 1808–1814 (2007).

    [12] J. J. Windle, D. M. Albert and J. M. O’Brien, ”Retinoblastoma in transgenic mice,” Nature 343, 665–669 (1990).

    [13] S. Remtulla and P. E. Hallett, “A schematic eye for the mouse, and comparisons with the rat,” Vision Research. 25, 21–31 (1985).

    [14] S. Jiao, R. Knighton, X. Huang, G. Gregori and C. Puliafito, “Simultaneous acquisition of sectional and fundus ophthalmic images with spectral-domain optical coherence tomography,” Optics Express 13, 444–452 (2005) http://www.opticsinfobase. org/abstract.cfm URI=oe-13-2-444

    [15] G. Tsechpenakis and J. Wang, “CRF-based segmentation of human tear meniscus obtained with optical coherence tomography,” IEEE International conference on Image Processing (ICIP), San Antonio, TX, September 2007.

    [16] G. Tsechpenakis and D. Metaxas, “CRF-driven Implicit Deformable Model,” IEEE Conference on Computer Vision and Pattern Recognition (CVPR), Minneapolis, MN, June 2007.

    [17] G. Tsechpenakis, J. Wang, B. Mayer and D. Metaxas, “Coupling CRFs and deformable models for 3D Medical Image Segmentation,” IEEE Mathematical Methods in Biomedical Image Analysis, International conference on Computer Vision (ICCV), Rio de Janeiro, Brazil, Oct. 2007.

    MARCO RUGGERI, HASSAN WEHBE, GAVRIIL TSECHPENAKIS, SHULIANG JIAO, MARIA ELENA JOCKOVICH, COLLEEN CEBULLA, ELEUT HERNANDEZ, TIMOTHY G. MURRAY, CARMEN A. PULIAFITO. QUANTITATIVE EVALUATION OF RETINAL TUMOR VOLUME IN MOUSE MODEL OF RETINOBLASTOMA BY USING ULTRA HIGH-RESOLUTION OPTICAL COHERENCE TOMOGRAPHY[J]. Journal of Innovative Optical Health Sciences, 2008, 1(1): 17
    Download Citation