Page 120 - Vibrational Spectroscopic Imaging for Biomedical Applications
P. 120
96 Cha pte r T h ree
26. J. L. Stephenson, “Ice Crystal Growth During the Rapid Freezing of Tissues,”
The Journal of Biophysical and Biochemical Cytology, 2:45–52, 1956.
27. N. Stone, C. Kendall, J. Smith, P. Crow, and H. Barr, “Raman Spectroscopy for
Identification of Epithelial Cancers,” Faraday Discussions, 126:141–157, 2003.
28. N. Stone, M. C. H. Prieto, P. Crow, J. Uff, and A. W. Ritchie, “The Use of Raman
Spectroscopy to Provide an Estimation of the Gross Biochemistry Associated
with Urological Pathologies,” Analytical and Bioanalytical Chemistry, 387:
1657–1668, 2007.
29. M. Jackson, J. R. Mansfield, B. Dolenko, R. L. Somorjai, H. H. Mantsch, and P.
H. Watson, “Classification of Breast Tumours by Grade and Steroid Receptor
Status Using Pattern Recognition Analysis of Infrared Spectra,” Cancer Detection
and Prevention, 23:245–253, 1999.
30. M. Meurens, J. Wallon, J. Tong, H. Noel, and J. Haot, “Breast Cancer Detection by
Fourier Transform Infrared Spectrometry,” Vibrational Spectroscopy, 10:341–346,
1996.
31. G. Muller, W. Wasche, U. Bindig, and K. Liebold, “IR-Spectroscopy for Tissue
Differentiation in the Medical Field,” Laser Physics, 9:348–356, 1999.
32. R. Wiens, M. Rak, N. Cox, S. Abraham, B. H. J. Juurlink, W. M. Kulyk, and K.
M. Gough, “Synchrotron FTIR Microspectroscopic Analysis of the Effects of
Anti-Inflammatory Therapeutics on Wound Healing in Laminectomized Rats,”
Analytical and Bioanalytical Chemistry, 387:1679–1689, 2007.
33. C. P. Schultz, “The Potential Role of Fourier Transform Infrared Spectroscopy
and Imaging in Cancer Diagnosis Incorporating Complex Mathematical
Methods,” Technology in Cancer Research and Treatment, 1:95–104, 2002.
34. C. Beleites, G. Steiner, M. G. Sowa, R. Baumgartner, S. Sobottka, G. Schackert,
and R. Salzer, “Classification of Human Gliomas by Infrared Imaging
Spectroscopy and Chemometric Image Processing,” Vibrational Spectroscopy,
38:143–149, 2005.
35. R. K. Sahu, S. Argov, A. Salman, U. Zelig, M. Huleihel, N. Grossman, J. Gopas, J.
Kapelushnik, and S. Mordechai, “Can Fourier Transform Infrared Spectroscopy
at Higher Wavenumbers (Mid IR) Shed Light on Biomarkers?” Journal of
Biomedical Optics, 10:05017–05027, 2005.
36. E. Gazi, M. Baker, J. Dwyer, N. P. Lockyer, P. Gardner, J. H. Shanks, R. S. Reeve,
C. A. Hart, M. D. Brown, and N. W. Clarke. “A Correlation of FTIR Spectra
Derived from Prostate Cancer Tissue with Gleason Grade and Tumour Stage,”
European Urology, 50:750–761, 2006.
37. E. O. Faolain, M. B. Hunter, J. M. Byrne, P. Kelehan, H. A. Lambkin, H. J. Byrne,
and F. M. Lyng, “Raman Spectroscopic Evaluation of Efficacy of Current Paraffin
Wax Section Dewaxing Agents,” Journal of Histochemistry and Cytochemistry,
53:121–129, 2005.
38. E. Gazi, J, Dwyer, N. P. Lockyer, P. Gardner, J. Miyan, C. A. Hart, M. D.
Brown, and N. W. Clarke, “Fixation Protocols for Sub-Cellular Imaging
Using Synchrotron Based FTIR-Microspectroscopy,” Biopolymers, 77:18–30,
2005.
39. C, Matthaus, S. Boydston-White, M. Miljkovic, M. Romeo, and M. Diem,
“Raman and Infrared Microspectral Imaging of Mitotic Cells,” Applied
Spectroscopy, 60:1–8, 2006.
40. E. Gazi, J. Dwyer, N. P. Lockyer, P. Gardner, J. Miyan, C. A. Hart, M. D. Brown,
and N. W. Clarke, “A Study of Cytokinetic and Motile Prostate Cancer Cells
Using Synchrotron-Based FTIR Microspectroscopic Imaging,” Vibrational
Spectroscopy, 38:193–201, 2005.
41. C. Krafft, T. Knetschke, R. H. W. Funk, and R. Salzer, “Identification of Organelles
and Vesicles in Single Cells by Raman Microspectroscopic Mapping,” Vibrational
Spectroscopy, 38:85–93, 2005.
42. J. A. Kieran, “Fixation,” Chap. 2, in: Histological and Histochemical Methods:
Theory & Practice, Pergamon Press, Oxford, UK, 1990, pp. 10–35.
43. E. Gazi, P. Gardner, N. P. Lockyer, C. A. Hart, N. W. Clarke, and M. D. Brown
“Probing Lipid Translocation between Adipocytes and Prostate Cancer Cells with
Imaging FTIR Microspectroscopy,” Journal of Lipid Research, 48:1846–1856, 2007.