The aim of this study is to characterize cardiovascular and respiratory signals during orthostatic and mental stress as reflected in indices of entropy and complexity, providing a comparison between the performance of different estimators. To this end, the heart rate variability, systolic blood pressure, diastolic blood pressure and respiration time series were extracted from the recordings of 61 healthy volunteers undergoing a protocol consisting of supine rest, head-up tilt test and mental arithmetic task. The analysis was performed in the information domain using measures of entropy and conditional entropy, estimated through model-based (linear) and model-free (binning, nearest neighbor) approaches. Our results show that different types ...
Objective: A defining feature of physiological systems under the neuroautonomic regulation is their ...
Self-entropy (SE) and transfer entropy (TE) are widely utilized in biomedical signal processing to a...
Self-entropy (SE) and transfer entropy (TE) are widely utilized in biomedical signal processing to a...
The aim of this study is to characterize cardiovascular and respiratory signals during orthostatic a...
Autonomic activity affects beat-to-beat variability of heart rate and QT interval. The aim of this s...
Autonomic activity affects beat-to-beat variability of heart rate and QT interval. The aim of this s...
Objective: A defining feature of physiological systems under the neuroautonomic regulation is their ...
Extensive efforts have been recently devoted to implement fast and reliable algorithms capable of as...
In this study, we assessed the information dynamics of respiration and heart rate variability during...
In this study, we assessed the information dynamics of respiration and heart rate variability during...
Cardiovascular control acts over multiple time scales, which introduces a significant amount of comp...
Extensive efforts have been recently devoted to implement fast and reliable algorithms capable of as...
Objective: A defining feature of physiological systems under the neuroautonomic regulation is their ...
Autonomic activity affects beat-to-beat variability of heart rate and QT interval. The aim of this s...
We compare different estimators of a popular en-tropy-based nonlinear dynamic measure, i.e. the cond...
Objective: A defining feature of physiological systems under the neuroautonomic regulation is their ...
Self-entropy (SE) and transfer entropy (TE) are widely utilized in biomedical signal processing to a...
Self-entropy (SE) and transfer entropy (TE) are widely utilized in biomedical signal processing to a...
The aim of this study is to characterize cardiovascular and respiratory signals during orthostatic a...
Autonomic activity affects beat-to-beat variability of heart rate and QT interval. The aim of this s...
Autonomic activity affects beat-to-beat variability of heart rate and QT interval. The aim of this s...
Objective: A defining feature of physiological systems under the neuroautonomic regulation is their ...
Extensive efforts have been recently devoted to implement fast and reliable algorithms capable of as...
In this study, we assessed the information dynamics of respiration and heart rate variability during...
In this study, we assessed the information dynamics of respiration and heart rate variability during...
Cardiovascular control acts over multiple time scales, which introduces a significant amount of comp...
Extensive efforts have been recently devoted to implement fast and reliable algorithms capable of as...
Objective: A defining feature of physiological systems under the neuroautonomic regulation is their ...
Autonomic activity affects beat-to-beat variability of heart rate and QT interval. The aim of this s...
We compare different estimators of a popular en-tropy-based nonlinear dynamic measure, i.e. the cond...
Objective: A defining feature of physiological systems under the neuroautonomic regulation is their ...
Self-entropy (SE) and transfer entropy (TE) are widely utilized in biomedical signal processing to a...
Self-entropy (SE) and transfer entropy (TE) are widely utilized in biomedical signal processing to a...