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        55.  M.  F.  Escoriza, J. M. Vanbriesen, S. Stewart, J. Maier, and P. J. Treado,
           “Raman Spectroscopy and Chemical Imaging for Quantification of Filtered
           Waterborne Bacteria,” Journal of Microbiological Methods, 66(1):63–72, 2006.
        56.  N. Afseth, V. Segtnan, and J. Wold, “Raman Spectra of Biological Samples:
           A Study of Preprocessing Methods,” Applied Spectroscopy, 60:1358–1367,
           2006.
        57. M. Pelletier, “Quantitive  Analysis Using Raman Spectroscopy,”  Applied
           Spectroscopy, 57:20A–39A, 2003.
        58. “Specialized Techniques,” Molecular Expressions, http://micro.magnet.fsu
           .edu/primer/techniques/fluorescence/fluorointrohome.html., 2008.
        59.  J. F. Brennan III, Y. Wang, R. R. Dasari, and M. S. Feld, “Near-Infrared Raman
           Spectrometer Systems for Human Tissue Studies,” Applied Spectroscopy,
           51:201–208, 1997.
        60.  “Glossary of Terms,” Princeton Instruments, http://www.princetoninstru-
           ments.com/library/glossary.aspx#d. (last accessed on March 2010)
        61.  National Institute of Standards & Technology, “Certificate of Analysis.
           Standard Reference Material 2242,” Gaitersburg, Md., 2004.
        62.  J. Zhao, H. Lui, D. McLean, and H. Zeng, “Automated Autofluorescence
           Background Subtraction Algorithm for Biomedical Raman Spectroscopy,”
           Applied Spectroscopy, 61:1225–1232, 2007.
        63.  C. Lieber and A. Mahadevan-Jansen, “Automated Methods for Subtraction
           of Fluorescence from Biological Raman Spectra,”  Applied Spectroscopy,
           57:1363–1367, 2003.
        64.  K. R. Beebe, R. J. Pell, and M. B. Seasholtz, Chemometrics A Practical Guide,
           John Wiley & Sons, New York, N.Y. 1998.
        65. R. Kramer, Chemometric Techniques for Quantitative Analysis, CTC Press, Boca
           Raton, Fla., 1998.
        66.  H. Martens and T. Naes, Multivariate Calibration, John Wiley & Sons, New
           York , N.Y., 1989.
        67.  A. H. Uihlein, S. Stewart, J. Maier, J. Cohen, Y. L. Liu, and J. F. Silverman,
           “Diagnostic Utility of Raman Molecular Imaging (RMI) in Separating Renal
           Oncocytoma from Chromophobe Renal Cell Carcinoma,” in 97th Annual
           Meeting United States and Canadian Academy of Pathology, USCAP Denver,
           Colo., 2008.
        68.  J. L. Lindner, S. Stewart, J. Maier, J. Cohen; J. F. Silverman, “Separation
           of Invasive Lobular from Ductal Carcinoma of the Breast Using Raman
           Molecular Imaging,” in 97th Annual Meeting United States and Canadian
           Academy of Pathology, USCAP, Denver, Colo., 2008.
        69.  H. Zhao, A. Langerod, Y. Ji, K. Nowles, J. Nesland, R. Tibshirani, I. Bukholm,
           R. Karesen, D. Botstein, A. Borresen-Dale, and S. Jeffrey, “Different Gene
           Expression Patterns in Invasive Lobular and Ductal Carcinomas of the
           Breast,” Molecular Biology of the Cell, 15(6):2523–2536, 2004.
        70.  C. Eliasson, A. Loren, J. Engelbrektsson, M. Josefson, J. Abrahamsson, and
           K. Abrahamsson, “Surface-Enhanced Raman Scattering Imagin of Single
           Living Lymphocytes with Multivariate Evaluation,” Spectrochimica Acta,
           Part A, 61:755–760, 2005.
        71.  R. Malini, K. Venkatakrishna, J. Kurian, K. Pai, L. Rao, V. Kartha, and C.
           M. Krishna, “Discrimination of Normal, Inflammatory, Premalignant, and
           Malignant Oral Tissue: A Raman Spectroscopy Study,”  Biopolymers, 81:
           179–193, 2006.
        72.  M. V. P. Chowdary, K. K. Kumar, J. Kurien, S. Mathew, and C. Murali Krishna.
           “Discrimination of Normal, Benign, and Malignant Breast Tissues by Raman
           Spectroscopy,” Biopolymers, 83:556–569, 2006.
        73.   K. K. Kumar, A. Anand, M. V. P. Chowdary, J. K. Keerthi, C. Murali Krishna, and
           S. Mathew, “Discrimination of Normal and Malignant Stomach Mucosal Tissue by
           Raman Spectroscopy: A Pilot Study,” Vibrational Spectroscopy, 44:382–387, 2007.
        74.  M. V. P. Chowdary, K. K. Kumar, K. Thakur, A. Anand, J. Kurien, C. Murali
           Krishna, and S. Mathew, “Discrimination of Normal and Malignant Mucosal
           Tissues of the Colon by Raman Spectroscopy,” Photomedicine and Laser Surgery,
           25:269–274, 2007.
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