This article revisits the subject of short-term heart-rate and arterial-pressure variability from the perspective of model structures that can be useful in defining signal processing algorithms. We draw a general scheme of the oscillation sources and interactions that contribute to cardiovascular control mechanisms and highlight the elements that were considered in different modeling works. The origin, superposition, and interaction of respiratory high-frequency (HF) and vasomotor low-frequency (LF) rhythms is presented as the integration of supraspinal and spinal circuits, vasomotor activity, and pressure control loops. We analyze in detail the necessity of considering all relevant interactions for the algorithms designed to estimate the b...
The dynamical interplay between brain and heart is mediated by several feedback mechanisms including...
The cardiovascular control system comprises a complex network of various control mechanisms operatin...
A model which assesses the closed-loop interaction between heart period (HP) and arterial pressure (...
This article revisits the subject of short-term heart-rate and arterial-pressure variability from th...
The paper stresses the importance of model-based signal processing in the analysis of the cardiovas...
The signals that originate from the human cardiovascular system were analysed using methods of both ...
Cardiovascular (CV) variability as a primary vital sign carrying information about CV regulation sys...
A linear model for the evaluation of causal interactions between heart period (HP) and systolic arte...
The dynamical interplay between brain and heart is mediated by several feedback mechanisms including...
Spontaneous beat-to-beat variations of heart rate (HR) have intrigued scientists and casual observer...
The aim of this paper is to highlight the aspects of the baroreflex control of the cardiovascular sy...
The dynamical interplay between brain and heart is mediated by several feedback mechanisms including...
The cardiovascular control system comprises a complex network of various control mechanisms operatin...
A model which assesses the closed-loop interaction between heart period (HP) and arterial pressure (...
This article revisits the subject of short-term heart-rate and arterial-pressure variability from th...
The paper stresses the importance of model-based signal processing in the analysis of the cardiovas...
The signals that originate from the human cardiovascular system were analysed using methods of both ...
Cardiovascular (CV) variability as a primary vital sign carrying information about CV regulation sys...
A linear model for the evaluation of causal interactions between heart period (HP) and systolic arte...
The dynamical interplay between brain and heart is mediated by several feedback mechanisms including...
Spontaneous beat-to-beat variations of heart rate (HR) have intrigued scientists and casual observer...
The aim of this paper is to highlight the aspects of the baroreflex control of the cardiovascular sy...
The dynamical interplay between brain and heart is mediated by several feedback mechanisms including...
The cardiovascular control system comprises a complex network of various control mechanisms operatin...
A model which assesses the closed-loop interaction between heart period (HP) and arterial pressure (...