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ISSN: 1023-5086

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ISSN: 1023-5086

Scientific and technical

Opticheskii Zhurnal

A full-text English translation of the journal is published by Optica Publishing Group under the title “Journal of Optical Technology”

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УДК: 535.375.5

Application of Raman spectroscopy to assess the condition of bone and cartilaginous biopsy specimens

For Russian citation (Opticheskii Zhurnal):

Тимченко П.Е., Тимченко Е.В., Долгушкин Д.А., Волова Л.Т., Маркова М.Д. Применение метода спектроскопии комбинационного рассеяния для оценки состояния костно-хрящевых биоптатов // Оптический журнал. 2017. Т. 84. № 6. С. 75–78.

 

Timchenko P.E., Timchenko E.V., Dolgushkin D.A., Volova L.T., Markova M.D. Application of Raman spectroscopy to assess the condition of bone and cartilaginous biopsy specimens [in Russian] // Opticheskii Zhurnal. 2017. V. 84. № 6. P. 75–78.

For citation (Journal of Optical Technology):

P. E. Timchenko, E. V. Timchenko, D. A. Dolgushkin, L. T. Volova, and M. D. Markova, "Application of Raman spectroscopy to assess the condition of bone and cartilaginous biopsy specimens," Journal of Optical Technology. 84(6), 423-425 (2017). https://doi.org/10.1364/JOT.84.000423

Abstract:

An analysis of the surfaces of bone and cartilaginous biopsy specimens was performed using Raman spectroscopy. The spectral characteristics of the subchondral bone as well as the cartilaginous tissue of the loaded and unloaded areas of the articular surface were established.

Keywords:

spectroscopy, Raman scattering, biopsy specimen, osteoarthrosis, hyaline cartilage

Acknowledgements:

The research was supported by the Ministry of Education and Science of the Russian Federation (Minobrnauka).

OCIS codes: 170.5660, 170.4580

References:

1. V. V. Ivanov, “The first experience of application of the device for bone tissue extraction during surgical treatment of patients with chondromas of short tubular bones,” Fundam. Issled. (9), 646–649 (2013).
2. É. L. Neı˘shtadt, Tumors and Tumor-Like Bone Diseases: a Guide for Doctors (Foliant, St. Petersburg, 2007).
3. Z. Movasaghi, S. Rehman, and I. U. Rehman, “Raman spectroscopy of biological tissues,” Appl. Spectrosc. Rev. 42(5), 493–541 (2007).
4. N. Stone, I. E. Tothill, and M. Thomas, “Raman spectroscopy of biological tissue for application in optical diagnosis of malignancy,” Cranfield Health, 247–277 (2010).
5. J. G. Kerns, P. D. Gikas, K. Buckley, A. Shepperd, H. L. Birch, I. McCarthy, J. Miles, T. W. Briggs, R. Keen, A. W. Parker, P. Matousek, and A. E. Goodship, “Evidence from Raman spectroscopy of a putative link between inherent bone matrix chemistry and degenerative joint disease,” Arthritis Rheumatol. 66(5), 1237–1246 (2014).
6. K. K. Kim, Y. Won, T. G. Kim, M. H. Baek, and J. Choi, “Comparison of the chemical composition of subchondral trabecular bone of medial femoral condyle between with advanced osteoarthritis and without osteoarthritis,” J. Bone Metab. 22(3), 93–97 (2015).
7. P. E. Timchenko, E. V. Timchenko, L. A. Zherdeva, N. V. Belousov, L. T. Volova, V. V. Rossinskaya, V. V. Boltovskaya, and E. I. Pugachev, “Optical methods for controlling cell-tissue implants under zero gravity conditions,” Bull. Lebedev Phys. Inst. 42(10), 305–308 (2015).