3.8 Numerical Calculations for the Resonator with a Simulated …
65
with different structures using the same setup. Thus, it seems very likely to find a
correlation between the electrophysical parameters of a biological substance and its
biological properties using this approach.
References
1. A.N. Smirnov, Diseases of the Blood. A Series of Reference Books of a Practical Physician.
M (2008)
2. M. Marlies, Basics Hämatologie (Elsevier GmbH, München, 2011)
3. K.G. Kulikov, A.I. Radin, Study of dispersion and absorption of an ensemble of spherical
particles inside an optical cavity and new possibilities of predicting the optical characteristics
of biological media by intracavity laser spectroscopy. Opt. Spectrosc. 82(2), 228–236 (2002)
4. K.G. Kulikov, Investigation into the electrophysical characteristics of hemocytes by intracavity
laser spectroscopy. ii: numerical simulation. Tech. Phys. 59(5), 782–786 (2014)
5. Bohren, Huffman, Absorption and Scattering of Light by Small Particles. M (1986)
6. A. Aden, M. Kerker, Scattering of electromagnetic waves from two concentric spheres. J. Appl.
Phys. 22, 1242 (1951)
7. O.R. Cruzan, Translational addition theorems for spherical vector wave functions quart. Appl.
Math. 20(1), 33–40 (1962)
8. P.A, Bobbert, J. Vlieger, Light scattering by a sphere on a substrate. Physica A 137(1), 209–241
(1986)
9. G. Videen, D. Ngo, P. Chylek, R.G. Pinnick, Light scattering from a sphere with an irregular
inclusion. J. Opt. Soc. Am. 12(5), 922–928 (1995)
10. M.Y. Balandin, E.P. Shurin, Methods for Solving Linear Algebraic Large Dimension (Novosibirsk, 2000)
11. H. Vorst van der, Iterative Krylov Methods for Large Linear Sysmems (Cambridge, 2003)
12. Y. Saad, Iterative Methods for Sparse Linear Systems (SIAM, 2003)
13. V.N. Kudashov, A.B. Plachenov, The natural oscillations in weakly inhomogeneous laser cavities. Opt. Spectrosc. 85(2), 149–154 (1998)
14. V.N. Lopatin, A.V. Priezzhev, A.D. Aponasenko and others. Methods Light Scattering in the
Analysis of Dispersed Biological Media. M (Fizmatlit, 2004)
15. G.V. Simonenko, V.V. Tuchin, Optical Properties of Biological Tissues (Saratov State University, Saratov, 2007) 48p
16. E. Libbert, Fundamentals of General Biology. M (Mir, 1982)
65
with different structures using the same setup. Thus, it seems very likely to find a
correlation between the electrophysical parameters of a biological substance and its
biological properties using this approach.
References
1. A.N. Smirnov, Diseases of the Blood. A Series of Reference Books of a Practical Physician.
M (2008)
2. M. Marlies, Basics Hämatologie (Elsevier GmbH, München, 2011)
3. K.G. Kulikov, A.I. Radin, Study of dispersion and absorption of an ensemble of spherical
particles inside an optical cavity and new possibilities of predicting the optical characteristics
of biological media by intracavity laser spectroscopy. Opt. Spectrosc. 82(2), 228–236 (2002)
4. K.G. Kulikov, Investigation into the electrophysical characteristics of hemocytes by intracavity
laser spectroscopy. ii: numerical simulation. Tech. Phys. 59(5), 782–786 (2014)
5. Bohren, Huffman, Absorption and Scattering of Light by Small Particles. M (1986)
6. A. Aden, M. Kerker, Scattering of electromagnetic waves from two concentric spheres. J. Appl.
Phys. 22, 1242 (1951)
7. O.R. Cruzan, Translational addition theorems for spherical vector wave functions quart. Appl.
Math. 20(1), 33–40 (1962)
8. P.A, Bobbert, J. Vlieger, Light scattering by a sphere on a substrate. Physica A 137(1), 209–241
(1986)
9. G. Videen, D. Ngo, P. Chylek, R.G. Pinnick, Light scattering from a sphere with an irregular
inclusion. J. Opt. Soc. Am. 12(5), 922–928 (1995)
10. M.Y. Balandin, E.P. Shurin, Methods for Solving Linear Algebraic Large Dimension (Novosibirsk, 2000)
11. H. Vorst van der, Iterative Krylov Methods for Large Linear Sysmems (Cambridge, 2003)
12. Y. Saad, Iterative Methods for Sparse Linear Systems (SIAM, 2003)
13. V.N. Kudashov, A.B. Plachenov, The natural oscillations in weakly inhomogeneous laser cavities. Opt. Spectrosc. 85(2), 149–154 (1998)
14. V.N. Lopatin, A.V. Priezzhev, A.D. Aponasenko and others. Methods Light Scattering in the
Analysis of Dispersed Biological Media. M (Fizmatlit, 2004)
15. G.V. Simonenko, V.V. Tuchin, Optical Properties of Biological Tissues (Saratov State University, Saratov, 2007) 48p
16. E. Libbert, Fundamentals of General Biology. M (Mir, 1982)
