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Proceedings Paper

Informativeness of the medical-physical method for analyzing the distributions of the degree of local depolarization of microscopic images of histological sections of the intestinal wall for the diagnosis of dolechosigma
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Paper Abstract

The materials of experimental studies of the coordinate and statistical structure of the distributions of the degree of local depolarization of laser microscopic images of histological sections of a biopsy of the intestinal wall of patients with dolechosigma (group 2) are presented. The relationships between the values of the statistical moments characterizing the distribution of the degree of local depolarization of laser microscopic images of histological sections of the intestinal wall biopsy of sick patients in group 2 were established. From the standpoint of evidence-based medicine, an analysis was made of the operational characteristics of the strength of the method for measuring the distributions of the degree of local depolarization of laser microscopic images of histological sections of a biopsy of the intestinal wall of patients from group 2 based on the determination of sensitivity, specificity, accuracy, predictability of a positive and predictability of a negative result.

Paper Details

Date Published: 6 February 2020
PDF: 7 pages
Proc. SPIE 11369, Fourteenth International Conference on Correlation Optics, 113691O (6 February 2020); doi: 10.1117/12.2553954
Show Author Affiliations
A. Ushenko, Chernivtsi National Univ. (Ukraine)
Yu. Sarkisova, Bukovinian State Medical Univ. (Ukraine)
A. Dubolazov, Chernivtsi National Univ. (Ukraine)
Yu. Ushenko, Chernivtsi National Univ. (Ukraine)
Yu. Tomka, Chernivtsi National Univ. (Ukraine)
A. Karachevtsev, Chernivtsi National Univ. (Ukraine)
M. Sidor, Chernivtsi National Univ. (Ukraine)
A. Prydiy, Chernivtsi National Univ. (Ukraine)
V. V. Dvorjak, Chernivtsi National Univ. (Ukraine)
K. Tymchuk, Bukovinian State Medical Univ. (Ukraine)


Published in SPIE Proceedings Vol. 11369:
Fourteenth International Conference on Correlation Optics
Oleg V. Angelsky, Editor(s)

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