Kirjojen hintavertailu – 12 903 724 kirjaa ja 27 kauppaa

Kirjailija

Yurii Ushenko

Kirjat ja teokset yhdessä paikassa: 3 kirjaa, julkaisuja vuosilta 2021–2024, suosituimpiin kuuluu Muller Matrix Images of Biological Crystal Networks. Vertaile teosten hintoja ja tarkista saatavuus suomalaisista kirjakaupoista.

3 kirjaa

Kirjojen julkaisuvuodet: 2021–2024.

Polarization tomography of biological fluids polycrystalline films

Polarization tomography of biological fluids polycrystalline films

Valeriy Skliarchuk; Olexander Ushenko; Yurii Ushenko

Lap Lambert Academic Publishing
2024
pokkari
The principles and effectiveness of the method of laser polarization interferometry of dehydrated blood films (facies) for the differential diagnosis of thyroid pathology have been studied. For this purpose, a theoretical description of the processes of formation and layer-by-layer phase scanning of the polarization structure of speckle fields in the blood facies of donors and patients with nodular goiter, autoimmune thyroiditis, and papillary cancer has been developed for the first time. A statistical analysis of holographically reconstructed maps of polarization ellipticity of the singly scattered component of the speckle field was conducted. Based on this analysis, the most sensitive markers for the diagnosis and differentiation of thyroid pathology were identified. Excellent diagnostic accuracy (91%-93%) and very good differentiation accuracy (86%-89%) were achieved for nodular goiter, autoimmune thyroiditis, and papillary cancer.
Shedding the Polarized Light on Biological Tissues

Shedding the Polarized Light on Biological Tissues

Igor Meglinski; Liliya Trifonyuk; Victor Bachinsky; Oleh Vanchulyak; Boris Bodnar; Maxim Sidor; Olexander Dubolazov; Alexander Ushenko; Yurii Ushenko; Irina V. Soltys; Alexander Bykov; Benjamin Hogan; Tatiana Novikova

Springer Verlag, Singapore
2021
nidottu
This book explores the early-stage detection of cancer using polarized light. It discusses the diverse properties of the light (temporal and spatial coherence, polarization, fluorescence, etc.) that can be used non-invasively as an optical technique for recognizing precancerous lesions, which could become a reliable and accurate method for cancer screening. The search for the effective means for cancer screening is of particular interest to scientific and medical communities, because cancer takes its toll around the globe with no respect for age or gender. Early detection of the disease is a key factor in increasing the survival rate and patients’ quality of life.