Brain tissue oxygen (PbtO2) monitoring in traumatic brain injury (TBI) has demonstrated strong associations with global outcome. Additionally, PbtO2 signals have been used to derive indices thought to be associated with cerebrovascular reactivity in TBI. However, their true relationship to slow-wave vasogenic fluctuations associated with cerebral autoregulation remains unclear. The goal of this study was to investigate the relationship between slow-wave fluctuations of intracranial pressure (ICP), mean arterial pressure (MAP) and PbtO2 over time. Using the Collaborative European NeuroTrauma Effectiveness Research in Traumatic Brain Injury (CENTER-TBI) high resolution ICU sub-study cohort, we evaluated those patients with recorded high-frequ...
BACKGROUND: Two transcranial Doppler (TCD) estimators of cerebral arterial blood volume (CaBV) coexi...
The cerebral pressure reactivity index (PRx), through intracranial pressure (ICP) measurements, info...
Background Continuous monitoring of cerebral autoregulation is considered clinically useful due to i...
Brain tissue oxygen (PbtO2) monitoring in traumatic brain injury (TBI) has demonstrated strong assoc...
Brain tissue oxygen (PbtO2) monitoring in traumatic brain injury (TBI) has demonstrated strong assoc...
Pressure reactivity index (PRx) and brain tissue oxygen (PbtO2) are associated with outcome in traum...
Pressure reactivity index (PRx) and brain tissue oxygen (PbtO2) are associated with outcome in traum...
BACKGROUND: Brain tissue oxygen tension (PbtO2) and cerebrovascular pressure reactivity monitoring h...
Background The primary aim was to explore the association of global cerebral physiological variables...
Current accepted cerebrovascular reactivity indices suffer from the need of high frequency data capt...
Abstract: Current accepted cerebrovascular reactivity indices suffer from the need of high frequency...
Guidelines for the management of traumatic brain injury (TBI) call for the development of accurate m...
Strong correlation between mean intracranial pressure (ICP) and its pulse wave amplitude (AMP) has b...
Myogenic autoregulation of cerebral blood flow is one of the mechanisms affecting cerebral hemodynam...
BACKGROUND: Two transcranial Doppler (TCD) estimators of cerebral arterial blood volume (CaBV) coexi...
The cerebral pressure reactivity index (PRx), through intracranial pressure (ICP) measurements, info...
Background Continuous monitoring of cerebral autoregulation is considered clinically useful due to i...
Brain tissue oxygen (PbtO2) monitoring in traumatic brain injury (TBI) has demonstrated strong assoc...
Brain tissue oxygen (PbtO2) monitoring in traumatic brain injury (TBI) has demonstrated strong assoc...
Pressure reactivity index (PRx) and brain tissue oxygen (PbtO2) are associated with outcome in traum...
Pressure reactivity index (PRx) and brain tissue oxygen (PbtO2) are associated with outcome in traum...
BACKGROUND: Brain tissue oxygen tension (PbtO2) and cerebrovascular pressure reactivity monitoring h...
Background The primary aim was to explore the association of global cerebral physiological variables...
Current accepted cerebrovascular reactivity indices suffer from the need of high frequency data capt...
Abstract: Current accepted cerebrovascular reactivity indices suffer from the need of high frequency...
Guidelines for the management of traumatic brain injury (TBI) call for the development of accurate m...
Strong correlation between mean intracranial pressure (ICP) and its pulse wave amplitude (AMP) has b...
Myogenic autoregulation of cerebral blood flow is one of the mechanisms affecting cerebral hemodynam...
BACKGROUND: Two transcranial Doppler (TCD) estimators of cerebral arterial blood volume (CaBV) coexi...
The cerebral pressure reactivity index (PRx), through intracranial pressure (ICP) measurements, info...
Background Continuous monitoring of cerebral autoregulation is considered clinically useful due to i...