Monitoring system of biophysical properties of the red blood cells of patients for medical diagnosis purposes

Modern medical diagnostics is impossible without high-tech means of collecting information about the patient's condition, in particular, the biochemical properties of blood and other tissues, physiological signals in the format of time series, and medical images as well. Extensive use of automa...

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Main Authors: Л.В. Батюк, Н.М. Кізілова
Format: Article
Language:English
Published: Ivan Kozhedub Kharkiv National Air Force University 2020-09-01
Series:Системи обробки інформації
Subjects:
Online Access:https://journal-hnups.com.ua/index.php/soi/article/view/410
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spelling doaj-9e9642fcf5d0437fa3f5bc3215818be62020-11-28T13:46:16ZengIvan Kozhedub Kharkiv National Air Force UniversityСистеми обробки інформації1681-77102518-16962020-09-013(162),132010.30748/soi.2020.162.02410Monitoring system of biophysical properties of the red blood cells of patients for medical diagnosis purposesЛ.В. Батюк0Н.М. Кізілова1of Kharkiv National Medical University, Kharkiv, UkraineV.N. Karazin Kharkiv National University, Kharkiv, UkraineModern medical diagnostics is impossible without high-tech means of collecting information about the patient's condition, in particular, the biochemical properties of blood and other tissues, physiological signals in the format of time series, and medical images as well. Extensive use of automatic methods of information processing and decision-making based on mathematical models, expert systems, and artificial intelligence is an integral part of the tomorrow’s medicine. Such approaches significantly increase the accuracy of diagnosis and the effectiveness of the prescribed treatment, but this requires the availability of properly structured databases with the results of both successful / unsuccessful treatments, and a complete set of necessary analyses and tests for each patient. This paper discusses the most important components of such database and public health monitoring system. The main issues are the standardization of data format, approaches, methods and laboratory equipment used to unify monitoring, diagnosis and control over the treatment. The importance of using additional physical parameters of blood cells and tissues to increase the efficiency of medical diagnostics with artificial intelligence is shown. The sedimentation curves corresponding to stable normal, stable increased and unstable erythrocyte aggregation rate are given. It is shown that the time to reach the maximum cell sedimentation rate can be calculated on a 2-phase model of blood suspension, indicators of which could be accumulated in the database, which will allow the extraction of additional diagnostic information using novel statistical and mathematical methods. Typical dependences of erythrocyte dielectric constant curves on temperature for oncology patients are given. It is shown that storage in the database the values of dielectric permittivity of red blood cells measured at different temperature and  frequencies of electromagnetic fields applied in the dielectrometer, provides significant material for a more detailed study of the patterns of development of various diseases and finding the most sensitive indices for their timely detection.https://journal-hnups.com.ua/index.php/soi/article/view/410monitoring systems, databases, decision making, biophysics, red blood cells, mathematical modeling, medical diagnostics.
collection DOAJ
language English
format Article
sources DOAJ
author Л.В. Батюк
Н.М. Кізілова
spellingShingle Л.В. Батюк
Н.М. Кізілова
Monitoring system of biophysical properties of the red blood cells of patients for medical diagnosis purposes
Системи обробки інформації
monitoring systems, databases, decision making, biophysics, red blood cells, mathematical modeling, medical diagnostics.
author_facet Л.В. Батюк
Н.М. Кізілова
author_sort Л.В. Батюк
title Monitoring system of biophysical properties of the red blood cells of patients for medical diagnosis purposes
title_short Monitoring system of biophysical properties of the red blood cells of patients for medical diagnosis purposes
title_full Monitoring system of biophysical properties of the red blood cells of patients for medical diagnosis purposes
title_fullStr Monitoring system of biophysical properties of the red blood cells of patients for medical diagnosis purposes
title_full_unstemmed Monitoring system of biophysical properties of the red blood cells of patients for medical diagnosis purposes
title_sort monitoring system of biophysical properties of the red blood cells of patients for medical diagnosis purposes
publisher Ivan Kozhedub Kharkiv National Air Force University
series Системи обробки інформації
issn 1681-7710
2518-1696
publishDate 2020-09-01
description Modern medical diagnostics is impossible without high-tech means of collecting information about the patient's condition, in particular, the biochemical properties of blood and other tissues, physiological signals in the format of time series, and medical images as well. Extensive use of automatic methods of information processing and decision-making based on mathematical models, expert systems, and artificial intelligence is an integral part of the tomorrow’s medicine. Such approaches significantly increase the accuracy of diagnosis and the effectiveness of the prescribed treatment, but this requires the availability of properly structured databases with the results of both successful / unsuccessful treatments, and a complete set of necessary analyses and tests for each patient. This paper discusses the most important components of such database and public health monitoring system. The main issues are the standardization of data format, approaches, methods and laboratory equipment used to unify monitoring, diagnosis and control over the treatment. The importance of using additional physical parameters of blood cells and tissues to increase the efficiency of medical diagnostics with artificial intelligence is shown. The sedimentation curves corresponding to stable normal, stable increased and unstable erythrocyte aggregation rate are given. It is shown that the time to reach the maximum cell sedimentation rate can be calculated on a 2-phase model of blood suspension, indicators of which could be accumulated in the database, which will allow the extraction of additional diagnostic information using novel statistical and mathematical methods. Typical dependences of erythrocyte dielectric constant curves on temperature for oncology patients are given. It is shown that storage in the database the values of dielectric permittivity of red blood cells measured at different temperature and  frequencies of electromagnetic fields applied in the dielectrometer, provides significant material for a more detailed study of the patterns of development of various diseases and finding the most sensitive indices for their timely detection.
topic monitoring systems, databases, decision making, biophysics, red blood cells, mathematical modeling, medical diagnostics.
url https://journal-hnups.com.ua/index.php/soi/article/view/410
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