Kirjojen hintavertailu – 12 903 724 kirjaa ja 27 kauppaa

Kirjailija

Yuriy A. Ushenko

Kirjat ja teokset yhdessä paikassa: 2 kirjaa, julkaisuja vuosilta 2023–2024, suosituimpiin kuuluu Optical Anisotropy of Biological Polycrystalline Networks. Vertaile teosten hintoja ja tarkista saatavuus suomalaisista kirjakaupoista.

2 kirjaa

Kirjojen julkaisuvuodet: 2023–2024.

Mueller-Matrix Tomography of Biological Tissues and Fluids

Mueller-Matrix Tomography of Biological Tissues and Fluids

Zhengbing Hu; Yuriy A. Ushenko; Iryna V. Soltys; Oleksandr V. Dubolazov; M. P. Gorsky; Oleksandr V. Olar; Liliya Yu. Trifonyuk

SPRINGER VERLAG, SINGAPORE
2024
nidottu
This book presents experimental investigations and digital image processing, highlighting the interaction of polarized radiation with phase-inhomogeneous and optically anisotropic biological layers. The promising and efficient use of vector-parametric description of the formation of polarization-inhomogeneous object fields is noted. Applications of a set of Mueller-matrix polarimetry methods are highlighted. The book includes- structural and logical scheme of multi-parameter (singular, interference and layer-by-layer Stokes-polarimetric), polarization-correlation study of the structure of distributions of the number of singularities, maps of local contrast of interference distributions and layer-by-layer maps of microscopic polarization azimuth and ellipticity; determination of relationships between changes in the magnitude of statistical parameters characterizing polarization-correlation distributions and pathology of prostate tumors.
Optical Anisotropy of Biological Polycrystalline Networks

Optical Anisotropy of Biological Polycrystalline Networks

Lilia Trifonyuk; Iryna V. Soltys; Alexander G. Ushenko; Yuriy A. Ushenko; Alexander V. Dubolazov; Jun Zheng

SPRINGER VERLAG, SINGAPORE
2023
nidottu
This book highlights the analysis of new azimuth-independent methods of Stokes polarimetry and Mueller-matrixreconstruction of distributions of optical anisotropy parameters using spatial-frequency filtering of manifestations of phase (linear and circular birefringence) and amplitude (linear and circular dichroism) anisotropy for diagnosing changes in the orientational-phase structure of fibrillar networks of histological sections of biological tissues and polycrystalline films of biological fluids.