2015 · 14 citations · 11 references
Spatial VariationBraincomputer InterfaceBurst Suppression ProbabilityElectroencephalographySocial SciencesTranslational MedicineBurst SuppressionBrain InjuryNeurologyInduced ComaAnesthetic PharmacologyNeuropharmacologyPerioperative MonitoringNeuroimagingCardiac ArrestNeurophysiologyEeg Signal ProcessingPatient SafetyElectrophysiologyNeuroscienceConcussionRefractory SeizuresAnesthesiaMedicineAnesthesiology
Burst suppression is actively studied as a control signal to guide anesthetic dosing in patients undergoing medically induced coma. The ability to automatically identify periods of EEG suppression and compactly summarize the depth of coma using the burst suppression probability (BSP) is crucial to effective and safe monitoring and control of medical coma. Current literature however does not explicitly account for the potential variation in burst suppression parameters across different scalp locations. In this study we analyzed standard 19-channel EEG recordings from 8 patients with refractory status epilepticus who underwent pharmacologically induced burst suppression as medical treatment for refractory seizures. We found that although burst suppression is generally considered a global phenomenon, BSP obtained using a previously validated algorithm varies systematically across different channels. A global representation of information from individual channels is proposed that takes into account the burst suppression characteristics recorded at multiple electrodes. BSP computed from this representative burst suppression pattern may be more resilient to noise and a better representation of the brain state of patients. Multichannel data integration may enhance the reliability of estimates of the depth of medical coma.
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Guidelines for the Evaluation and Management of Status Epilepticus
Gretchen M. Brophy, Rodney Bell, Jan Claassen et al. · Neurocritical Care · 2012 · 1.6K citations
Neurological Disorder, Patient Safety, Status Epilepticus +3