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Comparative Study
Quantitative electroencephalography in a swine model of cerebral arterial gas embolism.
- Robert P Weenink, Xavier C E Vrijdag, Michel J A M van Putten, Markus W Hollmann, Markus F Stevens, Thomas M van Gulik, and Robert A van Hulst.
- Diving Medical Center, Royal Netherlands Navy, Den Helder, The Netherlands.
- Clin Neurophysiol. 2012 Feb 1;123(2):411-7.
ObjectiveCerebral arterial gas embolism (CAGE) is a serious hazard in cardiovascular surgery and other invasive procedures. We used a swine model of CAGE to determine if quantitative electroencephalography (qEEG) is a useful tool in diagnosis and prognostication of CAGE.Methods0.05 ml/kg of air was injected into the ascending pharyngeal artery in 16 pigs. Intracranial pressure, lactate in brain microdialysate and brain oxygen tension were measured during 4h after embolization. The qEEG parameters mean amplitude (MAMP), alpha-delta ratio (ADR), spectral edge frequency (SEF(90)), spatial brain symmetry index (sBSI) and temporal brain symmetry index (tBSI) were calculated.ResultsMAMP and tBSI but not ADR, SEF(90) and sBSI correlate with intracranial pressure, brain lactate and brain oxygen tension after 4h. Early levels of MAMP and tBSI can predict intracranial pressure, brain lactate and brain oxygen tension after 4h.ConclusionsMAMP and tBSI are sensitive for cerebral injury and can predict outcome in a swine model of CAGE.SignificanceThis study provides evidence for the utility of qEEG for diagnosis and prognosis in CAGE. Further studies are necessary to investigate the use of this method in patients.Copyright © 2011 International Federation of Clinical Neurophysiology. Published by Elsevier Ireland Ltd. All rights reserved.
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