The analysis of heart rate variability (HRV) by nonlinear methods has been gaining increasing interest due to their ability to quantify the complexity of cardiovascular regulation. In this study, multiscale entropy (MSE) and refined MSE (RMSE) were applied to track the complexity of HRV as a function of time scale in three pathological conscious animal models: rats with heart failure (HF), spontaneously hypertensive rats (SHR), and rats with sinoaortic denervation (SAD). Results showed that HF did not change HRV complexity, although there was a tendency to decrease the entropy in HF animals. On the other hand, SHR group was characterized by reduced complexity at long time scales, whereas SAD animals exhibited a smaller short- and long-term ...
The entropy of heart rate variability is one of the main features characterizing the complexity of t...
It is known that in pathological conditions, physiological systems develop changes in the multiscale...
Cardiac autonomic neuropathy (CAN) is a common complication of diabetes mellitus, and can be assesse...
Multiscale entropy (MSE) provides information-domain measures of the systems' complexity. The increa...
Multiscale entropy (MSE) provides information-domain measures of the systems' complexity. The increa...
Quantifying complexity from heart rate variability (HRV) series is a challenging task, and multiscal...
We assess the complexity of Heart Rate Variability (HRV) time series by computing Approximate Entrop...
Objective: A defining feature of physiological systems under the neuroautonomic regulation is their ...
In this work, Refined Multiscale Entropy (RMSE) was applied to characterize risk of cardiac death in...
Multiscale entropy (MSE) was proposed to characterize complexity as a function of the time-scale fac...
An integrated approach to the complexity analysis of short heart period variability series (approxim...
Heart rate variability (HRV) has proven to be a useful noninvasive tool to study the neuronal contro...
The entropy of heart rate variability is one of the main features characterizing the complexity of t...
The entropy of heart rate variability is one of the main features characterizing the complexity of t...
The entropy of heart rate variability is one of the main features characterizing the complexity of t...
The entropy of heart rate variability is one of the main features characterizing the complexity of t...
It is known that in pathological conditions, physiological systems develop changes in the multiscale...
Cardiac autonomic neuropathy (CAN) is a common complication of diabetes mellitus, and can be assesse...
Multiscale entropy (MSE) provides information-domain measures of the systems' complexity. The increa...
Multiscale entropy (MSE) provides information-domain measures of the systems' complexity. The increa...
Quantifying complexity from heart rate variability (HRV) series is a challenging task, and multiscal...
We assess the complexity of Heart Rate Variability (HRV) time series by computing Approximate Entrop...
Objective: A defining feature of physiological systems under the neuroautonomic regulation is their ...
In this work, Refined Multiscale Entropy (RMSE) was applied to characterize risk of cardiac death in...
Multiscale entropy (MSE) was proposed to characterize complexity as a function of the time-scale fac...
An integrated approach to the complexity analysis of short heart period variability series (approxim...
Heart rate variability (HRV) has proven to be a useful noninvasive tool to study the neuronal contro...
The entropy of heart rate variability is one of the main features characterizing the complexity of t...
The entropy of heart rate variability is one of the main features characterizing the complexity of t...
The entropy of heart rate variability is one of the main features characterizing the complexity of t...
The entropy of heart rate variability is one of the main features characterizing the complexity of t...
It is known that in pathological conditions, physiological systems develop changes in the multiscale...
Cardiac autonomic neuropathy (CAN) is a common complication of diabetes mellitus, and can be assesse...