Biomedical Engineering Reference
In-Depth Information
References
1. Schmidt, W. 2005. Optical Spectroscopy in Chemistry and Life Sciences . Wiley-VCH
Verlag Gmbh& Co. KGaA, Weinheim, 1-12.
2. Sawyer, R. A. 1963. Experimental Spectroscopy . New York: Dover Publishers.
3. Wilde, E. 1985. Geschichte der optik , Sandig Reprint Verlag, H. R. Wohlwend,
Vaduz/Lichenstein.
4. Yadav, M. S. 2003. A Text Book of Spectroscopy . New Delhi: Anmol Publications, 1-16.
5. Banwell, C. N., and Mccash, E. 1994. Fundamentals of Molecular Spectroscopy .
4th ed. United Kingdom: McGraw-Hill International, 1-30.
6. Diem, M., Griffiths, P. R., and Chalmers, J. M. 2008. Vibrational Spectroscopy for
Medical Diagnosis . London: John Wiley & Sons, 187-202.
7. Lin-Vien, D., Colthuop, N. B., Fateley, W. G., and Grasselli, J. G. 1991. The Handbook
of Infrared and Raman Characteristic Frequencies of Organic Molecules . New York:
Academic Press.
8. Harris, A. T., Lungari, A., Needham, C. J., Smith, S. L., Lones, M. A., Fisher, S. E.,
Yang, X. B., Cooper, N., Kirkham, J., Smith, D. A, Martin-Hirsch, D. P., and High,
A. S. 2009. Potential for Raman spectroscopy to provide cancer screening using
a peripheral blood sample. Head & Neck Oncology 1, 34.
9. Das, K., Stone, N., Kendall, C., Fowler, C., and Christie-Brown, J. 2006. Raman
spectroscopy of parathyroid tissue pathology. Lasers Med. Sci . 21, 192-197.
10. Nicholas Stone, N., and Matousek, P. 2008. Advanced transmission Raman spec-
troscopy: A promising tool for breast disease diagnosis. Cancer Res . 68, 4424-4430.
11. Mahadevan-Jansen, A., and Richards-Kortum, R. 1997. Raman spectroscopy
for cancer detection. 19th International Conference IEEE EMBS, October 30-
November 2, 1997, Chicago, IL. 2722-2728.
12. Hanlon, E. B., Manoharan, R., Koo, T. W., Shafer, K. E., Motz, J. T., Fitzmaurice,
M., Kramer, J. R., Itzkan, I., Dasari, R. R., and Feld, M. S. 2000. Prospects for
in vivo Raman spectroscopy. Phys. Med. Biol . 45, 1-59.
13. Dukor, R. K. 2002. Vibrational spectroscopy in the detection of cancer. Biomedical
Applications , 3335-3359.
14. Conroy, J., Ryder, A. G., Leger, M. N., Hennessey, K., and Madden, M. G. 2005.
Qualitative and quantitative analysis of chlorinated solvents using Raman spec-
troscopy and machine learning. Proc. SPIE, Int. Soc. Opt. Eng . 5826, 131-142.
15. Wachsmann-Hogiu, S., Weeks, T., and Huser, T. 2009. Chemical analysis
in vivo and in vitro by Raman spectroscopy: From single cells to humans. Curr.
Opin. Biotechnol. 20, 63-73.
16. Choo-Smith, L. P., Edwards, H. G. M., Endtz, H. P., Kros, J. M., Heule, F., Barr, H.,
Robinson, J. S. Jr., Bruining, H. A., and Pupells, G. J. 2002. Medical applications
of Raman spectroscopy: From proof of principle to clinical implementation.
Biopolymers 67, 1-9.
17. 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. Int.
J. Cancer . 107, 1047-1052.
18. Jess, P. R., Smith, D. D., Mazilu, M., Dholakia, K., Riches, A. C., and Herrington,
C. S. 2007. Early detection of cervical neoplasia by Raman spectroscopy. Int.
J. Cancer . 121, 2723-2728.
 
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