We investigate synchronization between the low-frequency oscillations of heart rate and blood pressure having in humans a basic frequency close to 0.1 Hz. A quantitative estimation of this synchronization based on calculation of relative time of phase synchronization of oscillations is proposed. We show that assessment of synchronization between the considered oscillations can be useful for selecting an optimal dose of beta-blocker treatment in patients after acute myocardial infarction. It is found out that low value of synchronization between the low-frequency rhythms in heart rate and blood pressure at the first week after acute myocardial infarction is a sensitive marker of high risk of mortality during the subsequent 5 years
We analyse phase and frequency synchronization in the human cardio-respiratory system. The method fo...
Phase synchronization is an important phenomenon of nonlinear dynamics and has recently received muc...
We postulated that the variability of the phase shift (PS) between blood pressure (BP) and heart rat...
Synchronization between the slow oscillations of heart rate and blood pressure having in humans a ba...
Synchronization between 0.1 Hz oscillations in heart rate and blood pressure is studied and its chan...
Aim: The aim was the studying of synchronization between 0.1 Hz oscillations in heart rate (HR) and ...
Using an information-theoretic approach, causality between the systolic amplitude in blood pressure ...
In this article, the authors discussed in detail the proposed method of quantifying assessment of sy...
Objective. This study compares the statistical characteristics of interaction between 0.1 Hz oscilla...
We show that the transitions which occur between close orders of synchronization in the cardiorespir...
We show that the transitions which occur between close orders of synchronization in the cardio-respi...
Objective ― The purpose of this paper is to study statistical and dynamic properties of the low-freq...
Abstract: Low frequency oscillations in blood pressure (BP) can occur due to a feedback pathway betw...
This paper describes in detail a new method proposed by authors for quantitative estimation of the s...
Low frequency oscillations in blood pressure (BP) can occur due to a feedback pathway between the se...
We analyse phase and frequency synchronization in the human cardio-respiratory system. The method fo...
Phase synchronization is an important phenomenon of nonlinear dynamics and has recently received muc...
We postulated that the variability of the phase shift (PS) between blood pressure (BP) and heart rat...
Synchronization between the slow oscillations of heart rate and blood pressure having in humans a ba...
Synchronization between 0.1 Hz oscillations in heart rate and blood pressure is studied and its chan...
Aim: The aim was the studying of synchronization between 0.1 Hz oscillations in heart rate (HR) and ...
Using an information-theoretic approach, causality between the systolic amplitude in blood pressure ...
In this article, the authors discussed in detail the proposed method of quantifying assessment of sy...
Objective. This study compares the statistical characteristics of interaction between 0.1 Hz oscilla...
We show that the transitions which occur between close orders of synchronization in the cardiorespir...
We show that the transitions which occur between close orders of synchronization in the cardio-respi...
Objective ― The purpose of this paper is to study statistical and dynamic properties of the low-freq...
Abstract: Low frequency oscillations in blood pressure (BP) can occur due to a feedback pathway betw...
This paper describes in detail a new method proposed by authors for quantitative estimation of the s...
Low frequency oscillations in blood pressure (BP) can occur due to a feedback pathway between the se...
We analyse phase and frequency synchronization in the human cardio-respiratory system. The method fo...
Phase synchronization is an important phenomenon of nonlinear dynamics and has recently received muc...
We postulated that the variability of the phase shift (PS) between blood pressure (BP) and heart rat...