Cardiovascular and cerebrovascular regulatory systems are vital control mechanisms responsible for guaranteeing homeostasis and are affected by respiration. This work proposes the investigation of cardiovascular and cerebrovascular control systems and the nonlinear influences of respiration on both regulations through joint symbolic analysis (JSA), conditioned or unconditioned on respiration. Interactions between cardiovascular and cerebrovascular regulatory systems were evaluated as well by performing correlation analysis between JSA indexes describing the two control systems. Heart period, systolic and mean arterial pressure, mean cerebral blood flow velocity and respiration were acquired on a beat-to-beat basis in 13 subjects experiencin...
Heart rate and respiration display fluctuations that are interlinked by central regulatory mechanism...
We checked whether the observed shift of the dominant causality from heart period (HP) to systolic a...
The aim of the central nervous system in upright stance is to control an intrinsically unsta- ble pl...
Cardiovascular and cerebrovascular regulatory systems are vital control mechanisms responsible for g...
We propose a symbolic analysis framework for the quantitative characterization of complex dynamical ...
The aim of this study is to evaluate the degree of coupling between the cardiovascular variability s...
The transition from the supine to the upright position requires a reorganization of the mechanisms o...
Objective: A model-based conditional transfer entropy approach was exploited to quantify the informa...
Altered cerebral hemodynamics contributes to mechanisms of unexplained syncope. We compared dynamic ...
We present a framework for the linear parametric analysis of pairwise interactions in bivariate time...
Objective: Respiration disturbs cardiovascular and cerebrovascular controls but its role is not full...
A hypothetical causal link between ventilatory regulation of carbon dioxide anddevelopment of syncop...
2015 Conditional symbolic analysis detects nonlinear influences of respiration on cardiovascular con...
Some previous evidence suggests that postural related syncope is associated with defective mechanism...
A causal approach to the calculation of coherence and transfer function between systolic pressure (S...
Heart rate and respiration display fluctuations that are interlinked by central regulatory mechanism...
We checked whether the observed shift of the dominant causality from heart period (HP) to systolic a...
The aim of the central nervous system in upright stance is to control an intrinsically unsta- ble pl...
Cardiovascular and cerebrovascular regulatory systems are vital control mechanisms responsible for g...
We propose a symbolic analysis framework for the quantitative characterization of complex dynamical ...
The aim of this study is to evaluate the degree of coupling between the cardiovascular variability s...
The transition from the supine to the upright position requires a reorganization of the mechanisms o...
Objective: A model-based conditional transfer entropy approach was exploited to quantify the informa...
Altered cerebral hemodynamics contributes to mechanisms of unexplained syncope. We compared dynamic ...
We present a framework for the linear parametric analysis of pairwise interactions in bivariate time...
Objective: Respiration disturbs cardiovascular and cerebrovascular controls but its role is not full...
A hypothetical causal link between ventilatory regulation of carbon dioxide anddevelopment of syncop...
2015 Conditional symbolic analysis detects nonlinear influences of respiration on cardiovascular con...
Some previous evidence suggests that postural related syncope is associated with defective mechanism...
A causal approach to the calculation of coherence and transfer function between systolic pressure (S...
Heart rate and respiration display fluctuations that are interlinked by central regulatory mechanism...
We checked whether the observed shift of the dominant causality from heart period (HP) to systolic a...
The aim of the central nervous system in upright stance is to control an intrinsically unsta- ble pl...