Page 215 - Vibrational Spectroscopic Imaging for Biomedical Applications
P. 215

W idefield Raman Imaging of Cells and T issues   191


        75.  K. Maheedhar, R. A. Bhat, R. Malini, N. Prathima, P. Keerthi, P. Kushtagi, and
           C. Murali Krishna, “Diagnosis of Ovarian Cancer by Raman Spectroscopy: A
           Pilot Study,” Photomedicine and Laser Surgery, 26:83–90, 2008.
        76.  K. Shafer-Peltier, A. Haka, J. Motz, M. Fitzmaurice, R. Dasari, and M. Feld,
           “Model-Based Biological Raman Spectral Imaging,”  Journal of Cellular
           Biochemistry Supplement, 39:125–137, 2002.
        77.  K. Omberg, J. Osborn, S. Zhang, J. Freyer, J. Mourant, and J. Schoonover,
           “Raman Spectroscopy and Factor  Analysis of Tumorigenic and Non-
           Tumorigenic Cells,” Applied Spectroscopy, 56(7):813–819, 2002.
        78.  A. Nijssen, T. C. Schut, F. Heule, P. Caspers, D. Hayes, M. Neumann, and
           G. Puppels, “Discriminating Basal Cell Carcinoma from Its Surrounding
           Tissue by Raman Spectroscopy,” The Journal of Investigative Dermatology,
           119(1):64–69, 2002.
        79.  J. S. Thakur, H. Dai, G. K. Serhatkulu, R. Naik, V. Naik, A. Cao, A. Pandya,
           G. Auner, R. Rabah, M. Klein, and C. Freeman, “Raman Spectral Signatures
           of Mouse Mammary Tissue and Associated Lymph Nodes: Normal, Tumor,
           and Mastitis,” Journal of Raman Spectroscopy, 38:127–134, 2007.
        80.  C. Owen, J. Selvakumaran, I. Notingher, G. Jell, L. Hench, and M. Stevens,
           “In Vitro Toxicology Evaluation of Pharmaceuticals Using Raman Micro-
           Spectroscopy,” Journal of Cellular Biochemistry, 99:178–186, 2006.
        81.   G. Jell, I. Notingher, O. Tsigkou, P. Notingher, J. Polak, L. Hench, and M. Stevens,
           “Bioactive Glass-Induced Osteoblast Differentiation: A Noninvasive Spectroscopic
           Study,” Journal of Biomedical Materials Research Part A, 86A:31–40, 2008.
        82.  M. Escoriza, J. van Briesen, S. Stewart, and J. Maier, “Raman Spectroscopic
           Discrimination of Cell Response to Chemical and Physical Inactivation,”
           Applied Spectroscopy, 61(8):812–823, 2007.
        83.  A. Taleb, J. Diamond, J. McGarvey, J. Renwich Beattie, C. Toland, and P.
           Hamilton, “Raman Microscopy for the Chemometric Analysis of Tumor
           Cells,” Journal of Physical Chemistry B, 110:19625–19631, 2006.
        84.  A.  Mahadevan-Jansen, M. F. Mitchell, N. Ramanujam,  A. Malpica, S.
           Thomsen, U. Utzinger, and R. Richards-Kortum, “Near-Infrared Raman
           Spectroscopy for In Vitro Detection of Cervical Precancers,” Photochemistry
           Photobiology, 68(1):123–132, 1998.
        85.  F. Lyng, E. O. Faolain, J. Conroy, A. Meade, P. Knief, B. Duffy, M. Hunter,
           J. Byrne, P. Kelehan, and H. Byrne, “Vibrational Spectroscopy for Cervical
           Cancer Pathology, from Biochemical  Analysis to Diagnostic Tool,”
           Experimental Molecular and Pathology, 82:121–129, 2007.
        86.  T. Bakker Schut, M. J. Witjes, H. J. Sterenborg, O. Speelman, J. Roodenburg,
           E. Marple, H. Bruining, and G. Puppels, “In Vivo Detection of Dysplastic
           Tissue by Raman Spectroscopy,” Analytical Chemistry, 72:6010–6018, 2000.
        87.  N. Stone, C. Kendall, N. Shepherd, P. Crow, and H. Barr, “Near-Infrared
           Raman Spectroscopy for the Classification of Epithelial Pre-Cancers and
           Cancers,” Journal of Raman Spectroscopy, 33:564–573, 2002.
        88.  K. Das, N. Stone, C. Kendall, C. Fowler, and J. Christie-Brown, “Raman
           Spectroscopy of Parathyroid Tissue Pathology,” Lasers in Medical Science,
           21:192–197, 2006.
        89. R.  Swain, G. Jell, and M. Stevens, “Non-Invasive Analysis of Cell Cycle
           Dynamics in Single Living Cells with Raman Micro-Spectroscopy,” Journal of
           Cellular Biochemistry, 104:1427–1438, 2008.
        90.  J.  Chan, D. Taylor, S. Lane, T. Zwerdling, J. Tuscano, and T. Huser,
           “Nondestructive Identification of Individual Leukemia Cells by Laser Trapping
           Raman Spectroscopy,” Analytical Chemistry, 80:2180–2187, 2008.
        91.  S. Teh, W. Zheng, K. Ho, M. The, K. Yeoh, and Z. Huang, “Diagnostic Potential
           of Near-Infrared Raman Spectroscopy in the Stomach: Differentiating Dysplasia
           from Normal Tissue,” British Journal of Cancer, 98:457–465, 2008.
   210   211   212   213   214   215   216   217   218   219   220