Electroencephalographic Monitoring in the Recovery Room for Identification of Patients at Risk for Postoperative Delirium

医学 谵妄 危险分层 脑电图 麻醉 鉴定(生物学) 重症监护医学 急诊医学 梅德林 病人护理 风险评估 分层(种子) 医疗急救
作者
Maximilian Markus,Sandra Widmann,Julia Jansche,Matthias Kreuzer,Victoria Windmann,Sophie Leroy,Emery N. Brown,Claudia Spies,Susanne Koch
出处
期刊:Anesthesiology [Lippincott Williams & Wilkins]
标识
DOI:10.1097/aln.0000000000006096
摘要

BACKGROUND: Electroencephalography (EEG), especially the assessment of alpha oscillations (8-12 Hz), has gained attention as a non-invasive marker of neural network integrity, with reduced alpha power linked to thalamocortical disconnectivity and increased vulnerability to postoperative delirium (POD) in elderly patients. Recent studies have demonstrated that altered EEG dynamics in the alpha-band frequencies during anesthesia emergence in the post-anesthesia care unit (PACU) are associated with POD. However, EEG data postoperatively from the recovery room are scarce. METHODS: This prospective observational study (2019-2022) at Charité-Universitätsmedizin Berlin investigates frontal EEG signatures and postoperative delirium (POD) in older adults undergoing surgery. Postoperative POD screening was performed in the recovery room and twice daily for five days. While the overall study collected pre- and intraoperative EEGs, we focus here on frontal EEG files recorded in the recovery room while patients were awake. Spectral-domain EEG features and monitor-derived indices were compared by multivariable regression analysis between those who developed POD and those who did not. RESULTS: A total of 184 patients had sufficient EEG data for analysis; 57 (31%) developed POD. Recovery-room recordings showed significantly reduced alpha- and beta-band power in POD vs NoPOD patients with cumulative 10-20 Hz power providing the best discrimination (AUC 0.69, 95% CI 0.60-0.77). NoPOD patients exhibited increases in alpha- and beta-band power (8-20 Hz) relative to preoperative baseline, with highest augmentation at approximately 16 Hz, whereas POD patients retained spectral patterns comparable to baseline across all frequency bands. CONCLUSIONS: These data suggest that frontal EEG monitoring in the recovery room can help identify a "vulnerable brain" phenotype associated with increased POD risk. Integrating this monitoring into postoperative care may support risk stratification and more individualized management.
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