STATISTICAL FORECASTING OF THE MAXIMUM BOUNDARY OF THE CARDIORESPIRATORY SYNCHRONIZATION RANGE

We conducted a statistical analysis of the data, which are included in the regulatory and adaptive capabilities (RAC) estimation algorithm, to obtain the forecasting of maximum boundary (Max.B.) of synchronization range of cardiac and respiratory rhythms, in order to minimize the definition time of...

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Main Authors: V. M. Pokrovskii, S. V. Usatikov, T. V. Shkirya, L. V. Polischuk
Format: Article
Language:Russian
Published: Ministry of Healthcare of the Russian Federation. “Kuban State Medical University” 2015-06-01
Series:Кубанский научный медицинский вестник
Subjects:
Online Access:https://ksma.elpub.ru/jour/article/view/334
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spelling doaj-5545d5937a0048b0981f0869db120c3c2021-07-28T13:14:01ZrusMinistry of Healthcare of the Russian Federation. “Kuban State Medical University”Кубанский научный медицинский вестник1608-62282541-95442015-06-013838710.25207/1608-6228-2015-3-83-87334STATISTICAL FORECASTING OF THE MAXIMUM BOUNDARY OF THE CARDIORESPIRATORY SYNCHRONIZATION RANGEV. M. Pokrovskii0S. V. Usatikov1T. V. Shkirya2L. V. Polischuk3Kuban state medical universityKuban state technological universityKuban state technological universityKuban state medical universityWe conducted a statistical analysis of the data, which are included in the regulatory and adaptive capabilities (RAC) estimation algorithm, to obtain the forecasting of maximum boundary (Max.B.) of synchronization range of cardiac and respiratory rhythms, in order to minimize the definition time of RAC of the human body by the method of the cardiorespiratory synchronism (CRS). The following factors have been examined as the basis of the Max.B. forecast: the minimum boundary of the synchronization range, duration of evolution synchronization at the minimum boundary, Initial respiratory rate, Initial heart rate, age, height, weight, gender, menstrual cycle phase (only for women), diastolic and systolic blood pressure values. Linear and quadratic regression models, and neural network techniques - multilayer perceptron and radial basis function network have been analyzed. Neural network regression has shown the best accuracy: the value of synchronization range of cardiac and respiratory rhythms value can be forecast by these factors with the relative error of 20-30%, the probability will be grow up to level of 80-90%.https://ksma.elpub.ru/jour/article/view/334сердечно-дыхательный синхронизмстатистическое прогнозированиенейросетевая регрессияcardiorespiratory synchronizationstatistical forecastingneural network regression
collection DOAJ
language Russian
format Article
sources DOAJ
author V. M. Pokrovskii
S. V. Usatikov
T. V. Shkirya
L. V. Polischuk
spellingShingle V. M. Pokrovskii
S. V. Usatikov
T. V. Shkirya
L. V. Polischuk
STATISTICAL FORECASTING OF THE MAXIMUM BOUNDARY OF THE CARDIORESPIRATORY SYNCHRONIZATION RANGE
Кубанский научный медицинский вестник
сердечно-дыхательный синхронизм
статистическое прогнозирование
нейросетевая регрессия
cardiorespiratory synchronization
statistical forecasting
neural network regression
author_facet V. M. Pokrovskii
S. V. Usatikov
T. V. Shkirya
L. V. Polischuk
author_sort V. M. Pokrovskii
title STATISTICAL FORECASTING OF THE MAXIMUM BOUNDARY OF THE CARDIORESPIRATORY SYNCHRONIZATION RANGE
title_short STATISTICAL FORECASTING OF THE MAXIMUM BOUNDARY OF THE CARDIORESPIRATORY SYNCHRONIZATION RANGE
title_full STATISTICAL FORECASTING OF THE MAXIMUM BOUNDARY OF THE CARDIORESPIRATORY SYNCHRONIZATION RANGE
title_fullStr STATISTICAL FORECASTING OF THE MAXIMUM BOUNDARY OF THE CARDIORESPIRATORY SYNCHRONIZATION RANGE
title_full_unstemmed STATISTICAL FORECASTING OF THE MAXIMUM BOUNDARY OF THE CARDIORESPIRATORY SYNCHRONIZATION RANGE
title_sort statistical forecasting of the maximum boundary of the cardiorespiratory synchronization range
publisher Ministry of Healthcare of the Russian Federation. “Kuban State Medical University”
series Кубанский научный медицинский вестник
issn 1608-6228
2541-9544
publishDate 2015-06-01
description We conducted a statistical analysis of the data, which are included in the regulatory and adaptive capabilities (RAC) estimation algorithm, to obtain the forecasting of maximum boundary (Max.B.) of synchronization range of cardiac and respiratory rhythms, in order to minimize the definition time of RAC of the human body by the method of the cardiorespiratory synchronism (CRS). The following factors have been examined as the basis of the Max.B. forecast: the minimum boundary of the synchronization range, duration of evolution synchronization at the minimum boundary, Initial respiratory rate, Initial heart rate, age, height, weight, gender, menstrual cycle phase (only for women), diastolic and systolic blood pressure values. Linear and quadratic regression models, and neural network techniques - multilayer perceptron and radial basis function network have been analyzed. Neural network regression has shown the best accuracy: the value of synchronization range of cardiac and respiratory rhythms value can be forecast by these factors with the relative error of 20-30%, the probability will be grow up to level of 80-90%.
topic сердечно-дыхательный синхронизм
статистическое прогнозирование
нейросетевая регрессия
cardiorespiratory synchronization
statistical forecasting
neural network regression
url https://ksma.elpub.ru/jour/article/view/334
work_keys_str_mv AT vmpokrovskii statisticalforecastingofthemaximumboundaryofthecardiorespiratorysynchronizationrange
AT svusatikov statisticalforecastingofthemaximumboundaryofthecardiorespiratorysynchronizationrange
AT tvshkirya statisticalforecastingofthemaximumboundaryofthecardiorespiratorysynchronizationrange
AT lvpolischuk statisticalforecastingofthemaximumboundaryofthecardiorespiratorysynchronizationrange
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