Biomedical Engineering Reference
In-Depth Information
63. Stone, N., Kendell, C., Shepherd, N., Crow, P., and Barr, H. 2002. Near-infrared
Raman spectroscopy for the classification of epithelial pre-cancers and cancers.
J. Raman Spectroscopy. 33, 564-573.
64. Stone, N., Kendall, C., Smith, J., Crow, P., and Barr, H. 2004. Raman spectroscopy
for identification of epithelial cancers. Faraday Discussion 126, 141-157.
65. Wang, H. P., Wang, H.-C., and Huang, Y.-J. 1997. Microscopic FTIR studies of
lung cancer cells in pleural fluid. The Sci. Total Envir. 204, 283-287.
66. Yano, K., Ohoshima, S., Grotou, Y., Kumaido, K., Moriguchi, T., and Katayama,
H. 2000. Direct measurement of human lung cancerous and noncancerous tis-
sues by Fourier transform infrared microscopy: Can an infrared microscope be
used as a clinical tool? Analytical Biochemistry 287, 218-225.
67. Yang, Y., Sule-Suso, J., Sockalingum, G. D., Kegelaer, G., Manfait, M., and El
Haj, A. J. 2005. Study of tumour cell invasion by Fourier transform infrared
microspectroscopy. Biopolymers 78, 311-317.
68. Min, Y.-K., Yamamoto, T., Kohoda, E., Ito, T., and Hamaguchi, H. 2005. 1064-nm
near-infrared multichannel Raman spectroscopy of fresh human lung tissues.
J. Raman Spectroscopy. 36, 73-76.
69. Kaminaka, S., Yamazaki, H., Ito, T., Kohoda, E., and Hamaguchi, H. 2001. Near-
infrared Raman spectroscopy of human lung tissues: Possibility of molecular-
level cancer diagnosis. J. Raman Spectroscopy. 32, 139-141.
70. Huang, Z., McWilliams, A., Lui, M., McLean, D. I., Lam, S., and Zeng, H.
2003. Near-infrared Raman spectroscopy for optical diagnosis of lung cancer.
International Journal of Cancer 107, 1047-1052.
71. Alfano, R. R., Tang, G. C., Pradhan, A., Lam, W., Choy, D. S. J., and Opher, E.
1987. Optical spectroscopic diagnosis of cancer and normal breast tissues. IEEE
J. Quantum Electronics 6(5), 1015-1023.
72. Huang, Z., McWilliams A., Lam, S., English, J., McLean, D., Lui, H., Zeng, H.
2003. Effect of formalin fixation on the near-infrared Raman spectroscopy of
normal and cancerous human bronchial tissues. International Journal of Oncology
23, 649-655.
73. Short, M. A., Lam, S., McWilliams, A., et al. 2008. Development and preliminary
results of an in-vivo Raman probe for early lung cancer detection. Biomedical
Optical Spectroscopy 6853, 530.
74. Eckel, R., Huo, H., Guan, H.-W., Hu, X., Che, X., and Huang, W.-D. 2001.
Characteristic infrared spectroscopic patterns in the protein bands of human
breast cancer tissue. Vibrational Spectroscopy 27, 165-173.
75. Kline, N. J., and Treado, P. J. 1997. Raman chemical imaging of breast tissue.
J. Raman Spectroscopy. 28, 119-124.
76. Shafer-Peltier, K. E., Haka, A. S., Fitzmaurice, M., Crowe, J., Dasar, R. R., and
Feld, M. S. 2002. Raman microspectroscopic model of human breast tissue: impli-
cations for breast cancer diagnosis in vivo . J. Raman Spectroscopy. 33, 552-563.
77. Ronen, S. M., Stier, A., and Degani, H. 1990. NMR studies of the lipid metabo-
lism of T47D human breast cancer spheroids. FEBS Letter 266, 147-149.
78. Frank, C. J., McCreery, R. L., and Redd, D. C. B. 1995. Raman spectroscopy of
normal and diseased human breast tissues. Anal. Chem. 67, 777-783.
79. Fabian, H., Jackson, M., and Murphy, L., et al. 1995. A comparative infrared
spectroscopic study of human breast tumours and breast tumour cell xeno-
grafts. Biospectroscopy 1(1), 37-45.
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