Kirill Kulikov Tatiana Koshlan Kulikov Laser Interaction with Heterogeneous Biological Tissue

Laser Interaction with Heterogeneous Biological Tissue

von Kirill Kulikov Tatiana Koshlan

Mathematical Modeling

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Beschreibung

This book introduces readers to the principles of laser interaction with biological cells and tissues with varying degrees of organization. In addition to considering the problems of biomedical cell diagnostics, and modeling the scattering of laser irradiation of blood cells for biological structures (dermis, epidermis, vascular plexus), it presents an analytic theory based on solving the wave equation for the electromagnetic field. It discusses a range of mathematical modeling topics, including optical characterization of biological tissue with large-scale and small-scale inhomogeneities in the layers; heating blood vessels using laser irradiation on the outer surface of the skin; and thermo-chemical denaturation of biological structures based on the example of human skin.

In this second edition, a new electrodynamic model of the interaction of laser radiation with blood cells is presented for the structure of cells and the in vitro prediction of optical properties. The approach developed makes it possible to determine changes in cell size as well as modifications in their internal structures, such as transformation and polymorphism nucleus scattering, which is of interest for cytological studies. The new model is subsequently used to calculate the size distribution function of irregular-shape particles with a variety of forms and structures, which allows a cytological analysis of the observed deviations from normal cells.


This book introduces readers to the principles of laser interaction with biological cells and tissues with varying degrees of organization. In addition to considering the problems of biomedical cell diagnostics, and modeling the scattering of laser irradiation of blood cells for biological structures (dermis, epidermis, vascular plexus), it presents an analytic theory based on solving the wave equation for the electromagnetic field. It discusses a range of mathematical modeling topics, including optical characterization of biological tissue with large-scale and small-scale inhomogeneities in the layers; heating blood vessels using laser irradiation on the outer surface of the skin; and thermo-chemical denaturation of biological structures based on the example of human skin.

In this second edition, a new electrodynamic model of the interaction of laser radiation with blood cells is presented for the structure of cells and the in vitro prediction of optical properties. Theapproach developed makes it possible to determine changes in cell size as well as modifications in their internal structures, such as transformation and polymorphism nucleus scattering, which is of interest for cytological studies. The new model is subsequently used to calculate the size distribution function of irregular-shape particles with a variety of forms and structures, which allows a cytological analysis of the observed deviations from normal cells.


Presents a new scientific concept of a multicomponent, complex structure of biological tissues Develops an asymptotic theory of diffraction for predicting the optical properties of inhomogeneous biological structures with varying degrees of complexity Proposes an interpretation of the physical mechanism of interaction of laser radiation with heterogeneous multicomponent tissue Provides effective algorithms for solving problems in biomedical diagnostics

Autor*in

Kirill Kulikov

Themen in »Laser Interaction with Heterogeneous Biological Tissue«

Optical Properties of Biological Tissue Transport in Biological Tissues Intracavity Laser Spectroscopy Capillary Blood Flow Rate Optical Characteristics of Fibrillar Structure Modelling of Biological Tissue applications in Surgery of Lasers applications in Medicine of Lasers interaction of light with biological structures

Stimmen zu »Laser Interaction with Heterogeneous Biological Tissue«

Details

ISBN: 9783319941141
Verlag: Springer International Publishing
Erscheinung: 27.06.2018

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