Arterial Oxygenation in Traumatic Brain Injury—Relation to Cerebral Energy Metabolism, Autoregulation, and Clinical Outcome
Author(s) -
Teodor Svedung Wettervik,
Henrik Engquist,
Timothy Howells,
Samuel Lenell,
Elham Rostami,
Lars Hillered,
Per Enblad,
Anders Lewén
Publication year - 2020
Publication title -
journal of intensive care medicine
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.866
H-Index - 58
eISSN - 1525-1489
pISSN - 0885-0666
DOI - 10.1177/0885066620944097
Subject(s) - cerebral autoregulation , medicine , cerebral blood flow , cerebral perfusion pressure , autoregulation , traumatic brain injury , anesthesia , intracranial pressure , ischemia , oxygenation , blood pressure , hyperoxia , neurointensive care , arterial blood , hemodynamics , mean arterial pressure , cardiology , lung , heart rate , psychiatry
Ischemic and hypoxic secondary brain insults are common and detrimental in traumatic brain injury (TBI). Treatment aims to maintain an adequate cerebral blood flow with sufficient arterial oxygen content. It has been suggested that arterial hyperoxia may be beneficial to the injured brain to compensate for cerebral ischemia, overcome diffusion barriers, and improve mitochondrial function. In this study, we investigated the relation between arterial oxygen levels and cerebral energy metabolism, pressure autoregulation, and clinical outcome.
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