Monitoring of cerebrovascular pressure reactivity (PRx) has diagnostic and prognostic value in head-injured patients, but requires invasive monitoring of intracranial pressure (ICP). Near infrared spectroscopy (NIRS) is a noninvasive method that is suitable for continuous detection of cerebral blood volume changes. We compared a NIRS-based index of cerebrovascular reactivity, called total hemoglobin reactivity (THx), against standard measurements of PRx in a prospective observational study. Forty patients with closed-head injury were monitored daily with arterial blood pressure (ABP), ICP, and a NIRS-based total hemoglobin index. PRx and THx were calculated as the moving correlation coefficients using 5-min time windows between 10-sec avera...
Rapid bedside determination of cerebral blood pressure autoregulation (AR) may improve clinical util...
Purpose Cerebral autoregulation (CA) aims to attenuate the effects of blood pressure variation on ce...
BACKGROUND AND PURPOSE: Cerebral hemodynamic and metabolic changes can compensate for the decrease ...
BACKGROUND: Continuous monitoring of cerebral autoregulation might provide novel treatment targets a...
BackgroundCerebrovascular reactivity has been identified as a key contributor to secondary injury fo...
Abstract Understanding changes in cerebral oxygenation, haemodynamics and metabolism holds the key t...
Abstract Background Cerebrovascular reactivity has been identified as a key contributor to secondary...
Continuous monitoring of cerebral oxygenation is one of the diagnostic tools used in patients with b...
Background and Purpose-Cerebral hemodynamic and metabolic changes can compensate for the decrease in...
Multimodal monitoring has been gaining traction in the critical care of patients following traumatic...
Background and Purpose—Cerebral hemodynamic and metabolic changes can compensate for the decrease in...
Understanding changes in cerebral oxygenation, haemodynamics and metabolism holds the key to individ...
Background Brain tissue partial oxygen pressure (PbtO2) and near-infrared spectroscopy (NIRS) are no...
Measurement of cerebral oximetry by near-infrared spectroscopy provides continuous and non-invasive ...
BACKGROUND: Continuous monitoring of cerebral oxygenation is one of the diagnostic tools used in pat...
Rapid bedside determination of cerebral blood pressure autoregulation (AR) may improve clinical util...
Purpose Cerebral autoregulation (CA) aims to attenuate the effects of blood pressure variation on ce...
BACKGROUND AND PURPOSE: Cerebral hemodynamic and metabolic changes can compensate for the decrease ...
BACKGROUND: Continuous monitoring of cerebral autoregulation might provide novel treatment targets a...
BackgroundCerebrovascular reactivity has been identified as a key contributor to secondary injury fo...
Abstract Understanding changes in cerebral oxygenation, haemodynamics and metabolism holds the key t...
Abstract Background Cerebrovascular reactivity has been identified as a key contributor to secondary...
Continuous monitoring of cerebral oxygenation is one of the diagnostic tools used in patients with b...
Background and Purpose-Cerebral hemodynamic and metabolic changes can compensate for the decrease in...
Multimodal monitoring has been gaining traction in the critical care of patients following traumatic...
Background and Purpose—Cerebral hemodynamic and metabolic changes can compensate for the decrease in...
Understanding changes in cerebral oxygenation, haemodynamics and metabolism holds the key to individ...
Background Brain tissue partial oxygen pressure (PbtO2) and near-infrared spectroscopy (NIRS) are no...
Measurement of cerebral oximetry by near-infrared spectroscopy provides continuous and non-invasive ...
BACKGROUND: Continuous monitoring of cerebral oxygenation is one of the diagnostic tools used in pat...
Rapid bedside determination of cerebral blood pressure autoregulation (AR) may improve clinical util...
Purpose Cerebral autoregulation (CA) aims to attenuate the effects of blood pressure variation on ce...
BACKGROUND AND PURPOSE: Cerebral hemodynamic and metabolic changes can compensate for the decrease ...