Effect of hyperoxia on cerebral metabolic rate for oxygen measured using positron emission tomography in patients with acute severe head injury.
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Summary
In the absence of outcome data from clinical trials, these preliminary data do not support the use of 100% oxygen in patients with acute TBI, although larger confirmatory studies are needed.
- Type
- article
- Published
- 2007-04-01
- Cited by
- 135
- References
- 27
- OpenAlex
- https://openalex.org/W17432700
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:32323842
Keywords
Humanities, Philosophy
References
- Rapid Automated Algorithm for Aligning and Reslicing PET Images
- Increased inspired oxygen concentration as a factor in improved brain tissue oxygenation and tissue lactate levels after severe human head injury.
- Effects of cerebral perfusion pressure and increased fraction of inspired oxygen on brain tissue oxygen, lactate and glucose in patients with severe head injury
- Hyperbaric Oxygen Therapy for Reduction of Secondary Brain Damage in Head Injury: An Animal Model of Brain Contusion
- Brain blood flow measured with intravenous H2(15)O. II. Implementation and validation.
- Cerebral blood flow and metabolism in comatose patients with acute head injury. Relationship to intracranial hypertension.
- Relationship of brain tissue PO2 to outcome after severe head injury.
- Advanced monitoring in the neurology intensive care unit: microdialysis
- Cerebral oxygenation in patients after severe head injury: monitoring and effects of arterial hyperoxia on cerebral blood flow, metabolism and intracranial pressure.
- Lack of improvement in cerebral metabolism after hyperoxia in severe head injury: a microdialysis study.
- Brain Blood Volume, Flow, and Oxygen Utilization Measured with 15O Radiotracers and Positron Emission Tomography: Revised Metabolic Computations
- No reduction in cerebral metabolism as a result of early moderate hyperventilation following severe traumatic brain injury.
- Neurochemical monitoring using intracerebral microdialysis in patients with subarachnoid hemorrhage.
- Brain oxygen tension in severe head injury.
- Metabolic Crisis without Brain Ischemia is Common after Traumatic Brain Injury: A Combined Microdialysis and Positron Emission Tomography Study
- Effects of hyperbaric oxygenation therapy on cerebral metabolism and intracranial pressure in severely brain injured patients.
- Normobaric hyperoxia--induced improvement in cerebral metabolism and reduction in intracranial pressure in patients with severe head injury: a prospective historical cohort-matched study.
- Hyperoxia in head injury: therapeutic tool?
- Consensus Meeting on Microdialysis in Neurointensive Care
- Regional cerebrovascular and metabolic effects of hyperventilation after severe traumatic brain injury.
Cited by
- The effect of oxygen administration on regional cerebral oxygen saturation after stellate ganglion block on the non-blocked side.
- Growth hormone to catabolic patients revisited.
- Hyperoxia and traumatic brain injury.
- [Interaction brain-lungs].
- BrainSignals Revisited: Simplifying a Computational Model of Cerebral Physiology
- Non-invasive near infrared spectroscopy : a tool for measuring cerebral oxygenation and metabolism in patients with traumatic brain injury
- The Cumulative Influence of Hyperoxia and Hypercapnia on Blood Oxygenation and R2*
- Sources of systematic error in calibrated BOLD based mapping of baseline oxygen extraction fraction
- Traumatic brain injury: A common neurosurgical entity
- AN AUDIT OF THE MORTALITY DUE TO SEVERE HEAD INJURIES IN A NEURO-SURGICAL INTENSIVE CARE UNIT
- Vessel-specific quantification of blood oxygenation with T2-Relaxation-Under-Phase-Contrast (TRU-PC) MRI
- Comparison of Induced Hypertension, Fluid Bolus, and Blood Transfusion to Augment Cerebral Oxygen Delivery after Subarachnoid Hemorrhage
- Absolute quantification of oxygen metabolism in the human brain using FMRI
- Early hospital care of severe traumatic brain injury
- A breath of fresh air: the potential use for hyperoxia in traumatic brain injury.
- The physiology behind direct brain oxygen monitors and practical aspects of their use
- Early management of severe traumatic brain injury.
- Meta-analysis: convenient assumptions and inconvenient truth.
- Association between early hyperoxia and worse outcomes after traumatic brain injury.
- Cerebral Hemodynamic Effects of Acute Hyperoxia and Hyperventilation after Severe Traumatic Brain Injury
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