Topographic structures of mullier-matrix images of polycrystalline networks of biological layers

Authors

  • O.Yu. Novakovska Yuriy Fedkovych Chernivtsi National University
  • O.V. Dubolazov Yuriy Fedkovych Chernivtsi National University
  • O.V. Olar Yuriy Fedkovych Chernivtsi National University
  • Yu.O. Ushenko Yuriy Fedkovych Chernivtsi National University
  • L.Y. Pidkamin Yuriy Fedkovych Chernivtsi National University
  • Yu.Ya. Tomka Yuriy Fedkovych Chernivtsi National University

DOI:

https://doi.org/10.31649/1681-7893-2018-36-2-35-42

Keywords:

topography, Müller matrix, biological objects, polycrystallites

Abstract

This article discusses the possibility of identifying the basic mechanisms for the formation of Muller-matrix images of a network of curvilinear two-crystalline crystalline crystallites and identifying the main scenarios for the formation of the topographic structure of the contours of the characteristic values of the coordinate distributions of matrix elements.

Author Biographies

O.Yu. Novakovska, Yuriy Fedkovych Chernivtsi National University

к. ф.-м. н., асистент кафедри оптики і видавничо-поліграфічної справи

O.V. Dubolazov, Yuriy Fedkovych Chernivtsi National University

к. ф.-м. н., доцент кафедри оптики і видавничо-поліграфічної справи

O.V. Olar, Yuriy Fedkovych Chernivtsi National University

аспірант кафедри оптики і видавничо-поліграфічної справи

Yu.O. Ushenko, Yuriy Fedkovych Chernivtsi National University

д. ф.-м. н., професор кафедри комп’ютерних наук

L.Y. Pidkamin, Yuriy Fedkovych Chernivtsi National University

к. ф.-м. н., доцент кафедри оптики і видавничо-поліграфічної справи

Yu.Ya. Tomka, Yuriy Fedkovych Chernivtsi National University

к. ф.-м. н., доцент кафедри комп’ютерних наук

References

X. Wang, L. - H. Wang, (2002). Propagation of polarized light in birefringent turbid media: a Monte Carlo study. J. Biomed. Opt, 7, 279-290.

Тучин В. В. (1998) Лазеры и волоконная техника в биомедицинских исследованиях. Саратов: Изд-тво Сарат. ун-та.

O. V. Angelsky, A. G. Ushenko, D. N. Burcovets, Yu. A. Ushenko, (2005). Polarization visualization and selection of biotissue image two-layer scattering medium. J. Biomed. Opt., 10, 1.

J. F.Nye, M. Berry, (1974). Dislocations in wave trains. Proc. R. Soc. Lond, A 336, 165-190.

M. V. Berry, J. H. Hannay (1977) Umbilic points on Gaussian random surfaces. J. Phys. A: Math. Gen, 10, 1809-1821.

М. Soskin, V. Denisenko, R. Egorov, (2004). Topological networks of paraxial ellipse speckle-fields. J. Opt. A: Pure Appl. Opt, 6, S281-S287.

F. Gori, M. Santarsiero, S. Vicalvi, R. Borghi, G. Guattari, (1998). Beam coherence-polarization matrix. Pure Appl. Opt, 7, 941-951.

J. Tervo, T. Setala, A. Friberg, (2003). Degree of coherence for electromagnetic fields. Opt. Express, 11, 1137-1143.

J. Ellis and A. Dogariu, (2004). Complex degree of mutual polarization. Opt. Lett, 29, 536-538.

Yu.A. Ushenko, Yu.Ya. Tomka and A.V. Dubolazov, (2011). Complex degree of mutual anisotropy of extracellular matrix of biological tissues. Optics and Spectroscopy, 110, 5, 814-819.

Downloads

Abstract views: 241

Published

2019-07-08

How to Cite

[1]
O. Novakovska, O. Dubolazov, O. Olar, Y. Ushenko, L. Pidkamin, and Y. Tomka, “Topographic structures of mullier-matrix images of polycrystalline networks of biological layers”, Опт-ел. інф-енерг. техн., vol. 36, no. 2, pp. 35–42, Jul. 2019.

Issue

Section

Biomedical Optical And Electronic Systems And Devices

Metrics

Downloads

Download data is not yet available.

Most read articles by the same author(s)

<< < 1 2