In this paper a bivariate, time-variant model able to continuously measure the mutual interactions between heart rate and systolic blood pressure variability signals is presented, A recursive identification of the model parameters makes it possible to estimate, on a beat-to-beat basis, spectral low-frequency (LF) and high-frequency (HF) power, (LF/HF ratio) and cross-spectral (coherence and phase relationships between spectral peaks) indexes during nonstationary events, These indexes can be helpful in: 1) physiological study of autonomic nervous system mechanisms of cardiovascular central and 2) quantification and clinical evaluation of the neural and mechanical links between the two signals, in addition, an estimate of baroreceptive activa...
Multi-variate spectral analysis is able to describe the interactions between heart rate and arterial...
We present a framework for the linear parametric analysis of pairwise interactions in bivariate time...
Heart rate and other cardiovascular variables are not steady but fluctuate over time. The evolution ...
In this paper a bivariate, time-variant model able to continuously measure the mutual interactions b...
The traditional analysis in the frequency domain of cardiovascular variability signals requires stat...
Cardiovascular variability signals provide information about the functioning of the autonomous nervo...
The frequency domain analysis of the heart rare variability (HRV) signal is actually extended to non...
The role of the cardiovascular regulatory mechanism in patients with neuromediate syncope (NS) is po...
ECG monitoring of heart rate variability (HRV) in a noninvasive method for the evaluation of cardiov...
The neural regulation of circulatory function is mainly effected through the interplay of the sympat...
Vasovagal syncope is a disorder of regulation in which different quantities of neural sympathetic an...
A causal approach to the calculation of coherence and transfer function between systolic pressure (S...
A time-variant algorithm of autoregressive (AR) identification is introduced and applied to the hear...
A time-variant algorithm of autoregressive (AR) identification is introduced and applied to the hear...
The neural regulation of circulatory function is mainly effected through the interplay of the sympat...
Multi-variate spectral analysis is able to describe the interactions between heart rate and arterial...
We present a framework for the linear parametric analysis of pairwise interactions in bivariate time...
Heart rate and other cardiovascular variables are not steady but fluctuate over time. The evolution ...
In this paper a bivariate, time-variant model able to continuously measure the mutual interactions b...
The traditional analysis in the frequency domain of cardiovascular variability signals requires stat...
Cardiovascular variability signals provide information about the functioning of the autonomous nervo...
The frequency domain analysis of the heart rare variability (HRV) signal is actually extended to non...
The role of the cardiovascular regulatory mechanism in patients with neuromediate syncope (NS) is po...
ECG monitoring of heart rate variability (HRV) in a noninvasive method for the evaluation of cardiov...
The neural regulation of circulatory function is mainly effected through the interplay of the sympat...
Vasovagal syncope is a disorder of regulation in which different quantities of neural sympathetic an...
A causal approach to the calculation of coherence and transfer function between systolic pressure (S...
A time-variant algorithm of autoregressive (AR) identification is introduced and applied to the hear...
A time-variant algorithm of autoregressive (AR) identification is introduced and applied to the hear...
The neural regulation of circulatory function is mainly effected through the interplay of the sympat...
Multi-variate spectral analysis is able to describe the interactions between heart rate and arterial...
We present a framework for the linear parametric analysis of pairwise interactions in bivariate time...
Heart rate and other cardiovascular variables are not steady but fluctuate over time. The evolution ...