Paper
20 December 2021 Method of laser-induced polarization reconstruction of the polycrystalline structure of molecular fluorophores histological sections in histological definition age of damage internal human organs
V. Vasyuk, A. Kalashnikov, A. Yu. Litvinenko, A. Yu. Mykhaylova, A V. Motrich, A. V. Olar, Yu. A. Ushenko, P. Gorodenskiy
Author Affiliations +
Proceedings Volume 12126, Fifteenth International Conference on Correlation Optics; 1212624 (2021) https://doi.org/10.1117/12.2616670
Event: Fifteenth International Conference on Correlation Optics, 2021, Chernivtsi, Ukraine
Abstract
The article presents the results of algorithmic approbation of digital histological research methods of the age of damage to the tissues of the brain, liver and kidney, as well as the myocardium and lung tissue on the basis of polarization reconstruction of linear birefringence maps of protein fluorophores of fibrillar networks; determining the relationship between the temporal change in the magnitude of the statistical moments of the 1st - 4th orders, characterizing the distribution of the magnitude of the degree of crystallization of histological sections of the brain, liver and kidney, as well as the myocardium and lung tissue, and the duration of damage; establishment of time intervals and accuracy of determining the duration of damage to human internal organs by digital histological methods of polarization reconstruction (tomography) the degree of crystallization of samples of histological sections of the brain, liver and kidney, as well as myocardium and lung tissue.
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V. Vasyuk, A. Kalashnikov, A. Yu. Litvinenko, A. Yu. Mykhaylova, A V. Motrich, A. V. Olar, Yu. A. Ushenko, and P. Gorodenskiy "Method of laser-induced polarization reconstruction of the polycrystalline structure of molecular fluorophores histological sections in histological definition age of damage internal human organs", Proc. SPIE 12126, Fifteenth International Conference on Correlation Optics, 1212624 (20 December 2021); https://doi.org/10.1117/12.2616670
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KEYWORDS
Kidney

Tissues

Birefringence

Crystals

Polarization

Liver

Tomography

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