BACKGROUND: Normobaric oxygen therapy is frequently applied in neurocritical care, however, whether supplemental FiO2 has beneficial cerebral effects is still controversial. We examined in patients with severe traumatic brain injury (TBI) the effect of incremental FiO2 on cerebral excitotoxicity, quantified by cerebral microdialysis (CMD) glutamate. METHODS: This was a retrospective analysis of a database of severe TBI patients monitored with CMD and brain tissue oxygen (PbtO2). The relationship of FiO2-categorized into four separate ranges (<40, 41-60, 61-80, and >80 %)-with CMD glutamate was examined using ANOVA with Tukey's post hoc test. RESULTS: A total of 1,130 CMD samples from 36 patients-monitored for a median of 4 days-were e...
Traumatic brain injury (TBI) is known to inflict significant morbidity and mortality worldwide. In s...
OBJECT: Severe traumatic brain injury (TBI) imposes a huge metabolic load on brain tissue, which can...
Introduction We have shown that normobaric hyperoxia (NH) may rescue metabolically compromised tissu...
Background: Normobaric oxygen therapy is frequently applied in neurocritical care, however, whether ...
OBJECT: The effect of normobaric hyperoxia (fraction of inspired O2 [FIO2] concentration 100%) in th...
Preliminary evidence suggests that PbtO2 values of ¡Ü 15 mm Hg may be suggestive of brain tissue hyp...
Early impaired cerebral blood flow (CBF) after severe head injury (SHI) leads to poor brain tissue o...
We have previously shown that normobaric hyperoxia may benefit peri-lesional brain and white matter ...
Preliminary evidence suggests local brain tissue oxygenation (PbtO2) values of 15mm Hg following sev...
PURPOSE: The effect of high arterial oxygen levels and supplemental oxygen administration on outcome...
OBJECT: Early impairment of cerebral blood flow in patients with severe head injury correlates with ...
Object. The authors investigated the effects of hyperoxia on brain tissue PO2 and on glucose metabol...
Introduction: Neurointensive care of traumatic brain injury (TBI) patients is currently based on int...
Ischaemia and metabolic dysfunction remain important causes of neuronal loss following head injury, ...
BACKGROUND: Supplemental oxygen administration to critically ill patients is ubiquitous in the inten...
Traumatic brain injury (TBI) is known to inflict significant morbidity and mortality worldwide. In s...
OBJECT: Severe traumatic brain injury (TBI) imposes a huge metabolic load on brain tissue, which can...
Introduction We have shown that normobaric hyperoxia (NH) may rescue metabolically compromised tissu...
Background: Normobaric oxygen therapy is frequently applied in neurocritical care, however, whether ...
OBJECT: The effect of normobaric hyperoxia (fraction of inspired O2 [FIO2] concentration 100%) in th...
Preliminary evidence suggests that PbtO2 values of ¡Ü 15 mm Hg may be suggestive of brain tissue hyp...
Early impaired cerebral blood flow (CBF) after severe head injury (SHI) leads to poor brain tissue o...
We have previously shown that normobaric hyperoxia may benefit peri-lesional brain and white matter ...
Preliminary evidence suggests local brain tissue oxygenation (PbtO2) values of 15mm Hg following sev...
PURPOSE: The effect of high arterial oxygen levels and supplemental oxygen administration on outcome...
OBJECT: Early impairment of cerebral blood flow in patients with severe head injury correlates with ...
Object. The authors investigated the effects of hyperoxia on brain tissue PO2 and on glucose metabol...
Introduction: Neurointensive care of traumatic brain injury (TBI) patients is currently based on int...
Ischaemia and metabolic dysfunction remain important causes of neuronal loss following head injury, ...
BACKGROUND: Supplemental oxygen administration to critically ill patients is ubiquitous in the inten...
Traumatic brain injury (TBI) is known to inflict significant morbidity and mortality worldwide. In s...
OBJECT: Severe traumatic brain injury (TBI) imposes a huge metabolic load on brain tissue, which can...
Introduction We have shown that normobaric hyperoxia (NH) may rescue metabolically compromised tissu...