Burst-Suppression EEG Reactivity to Photic Stimulation-A Translational Biomarker in Hypoxic-Ischemic Brain Injury

The reactivity of an electroencephalogram (EEG) to external stimuli is impaired in comatose patients showing burst-suppression (BS) patterns following hypoxic-ischemic brain injury (HIBI). We explored the reactivity of BS induced by isoflurane in rat models of HIBI and controls using intermittent ph...

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Veröffentlicht in:Biomolecules (Basel, Switzerland) Switzerland), 2024-08, Vol.14 (8), p.953
Hauptverfasser: Pâslaru, Alexandru-Cătălin, Călin, Alexandru, Morozan, Vlad-Petru, Stancu, Mihai, Tofan, Laurențiu, Panaitescu, Anca Maria, Zăgrean, Ana-Maria, Zăgrean, Leon, Moldovan, Mihai
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Sprache:eng
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Zusammenfassung:The reactivity of an electroencephalogram (EEG) to external stimuli is impaired in comatose patients showing burst-suppression (BS) patterns following hypoxic-ischemic brain injury (HIBI). We explored the reactivity of BS induced by isoflurane in rat models of HIBI and controls using intermittent photic stimulation (IPS) delivered to one eye. The relative time spent in suppression referred to as the suppression ratio (SR) was measured on the contralateral fronto-occipital cortical EEG channel. The BS reactivity (BSR) was defined as the decrease in the SR during IPS from the baseline before stimulation (SR ). We found that BSR increased with SR . To standardize by anesthetic depth, we derived the BSR index (BSRi) as BSR divided by SR . We found that the BSRi was decreased at 3 days after transient global cerebral ischemia in rats, which is a model of brain injury after cardiac arrest. The BSRi was also reduced 2 months after experimental perinatal asphyxia in rats, a model of birth asphyxia, which is a frequent neonatal complication in humans. Furthermore, Oxytocin attenuated BSRi impairment, consistent with a neuroprotective effect in this model. Our data suggest that the BSRi is a promising translational marker in HIBI which should be considered in future neuroprotection studies.
ISSN:2218-273X
2218-273X
DOI:10.3390/biom14080953