Despite advances in modelling dynamic autoregulation, only part of the variability of cerebral blood flow velocity (CBFV) in the low frequency range has been explained. We investigate whether a multivariate representation can be used for this purpose. Pseudorandom sequences were used to inflate thigh cuffs and to administer 5% CO2. Multiple and partial coherence were estimated, using arterial blood pressure (ABP), end-tidal CO2 (EtCO2) and resistance area product as input and CBFV as output variables. The inclusion of second and third input variables increased the amount of CBFV variability that can be accounted for (p < 10?4 in both cases). Partial coherence estimates in the low frequency range (<0.07 Hz) were not influenced by the u...
The effect of spontaneous beat-to-beat mean arterial blood pressure fluctuations and breath-to-breat...
OBJECTIVE: Previous studies on cerebral autoregulation have shown the existence of hemispheric symme...
Cerebral metabolism is critically dependent on the regulation of cerebral blood flow (CBF), so it wo...
Despite advances in modelling dynamic autoregulation, only part of the variability of cerebral blood...
Despite advances in modelling dynamic autoregulation, only part of the variability of cerebral blood...
The effect of spontaneous beat-to-beat mean arterial blood pressure (ABP) fluctuations and breath-to...
Introduction: The brain is a highly sophisticated system that operates dynamically which is in const...
Objective: The gain and phase of the arterial blood pressure (BP)-cerebral blood flow velocity (CBFV...
Cerebral autoregulation acts to buffer changes in cerebral perfusion pressure. Previous studies have...
We tested the influence of blood pressure variability on the reproducibility of dynamic cerebral aut...
Key pointsDynamic cerebral autoregulation (CA) is expressed by the temporal pattern of cerebral bloo...
We tested the influence of blood pressure variability on the reproducibility of dynamic cerebral aut...
Cerebral autoregulation maintains a relatively constant blood flow despite changes of blood pressure...
Cerebral autoregulation is defined as a mechanism that maintains cerebral blood flow at a relatively...
Cerebral autoregulation is the process of maintaining blood flow to the brain almost constant despit...
The effect of spontaneous beat-to-beat mean arterial blood pressure fluctuations and breath-to-breat...
OBJECTIVE: Previous studies on cerebral autoregulation have shown the existence of hemispheric symme...
Cerebral metabolism is critically dependent on the regulation of cerebral blood flow (CBF), so it wo...
Despite advances in modelling dynamic autoregulation, only part of the variability of cerebral blood...
Despite advances in modelling dynamic autoregulation, only part of the variability of cerebral blood...
The effect of spontaneous beat-to-beat mean arterial blood pressure (ABP) fluctuations and breath-to...
Introduction: The brain is a highly sophisticated system that operates dynamically which is in const...
Objective: The gain and phase of the arterial blood pressure (BP)-cerebral blood flow velocity (CBFV...
Cerebral autoregulation acts to buffer changes in cerebral perfusion pressure. Previous studies have...
We tested the influence of blood pressure variability on the reproducibility of dynamic cerebral aut...
Key pointsDynamic cerebral autoregulation (CA) is expressed by the temporal pattern of cerebral bloo...
We tested the influence of blood pressure variability on the reproducibility of dynamic cerebral aut...
Cerebral autoregulation maintains a relatively constant blood flow despite changes of blood pressure...
Cerebral autoregulation is defined as a mechanism that maintains cerebral blood flow at a relatively...
Cerebral autoregulation is the process of maintaining blood flow to the brain almost constant despit...
The effect of spontaneous beat-to-beat mean arterial blood pressure fluctuations and breath-to-breat...
OBJECTIVE: Previous studies on cerebral autoregulation have shown the existence of hemispheric symme...
Cerebral metabolism is critically dependent on the regulation of cerebral blood flow (CBF), so it wo...