Related Experiment Video
Updated: Apr 13, 2026

Intra-Operative Behavioral Tasks in Awake Humans Undergoing Deep Brain Stimulation Surgery
Published on: January 6, 2011
Machine learning-based prediction of postoperative delirium from intraoperative EEG signal alterations in brain
1Department of Anesthesiology, Hubei Key Laboratory of Geriatric Anesthesia and Perioperative Brain Health, and Wuhan Clinical Research Center for Geriatric Anesthesia, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Objectives:
Postoperative delirium (POD) is a frequent complication following cardiovascular surgery and requires timely intervention. While early risk prediction holds clinical value, practical tools remain limited. This study aims to identify EEG-based features associated with POD and evaluate their predictive potential using machine learning.
Methods:
70 patients undergoing cardiovascular surgery were enrolled, including 35 with POD and 35 without. Functional connectivity was assessed using phase-locking values (PLV) derived from intraoperative EEG data. Network edges showing significant between-group differences in the delta, theta, alpha, and beta bands were selected as features for input into an XGBoost classifier.
Results:
POD patients exhibited the most pronounced alterations in the theta band, with 12 significantly different PLV edges, followed by 1 in delta, 4 in alpha, and 5 in beta. All significant edges showed increased PLV values. Theta-band features demonstrated the highest predictive performance, achieving 90.7% accuracy and an Area Under the Receiver Operating Characteristic Curve of 0.91.
Conclusions:
Our findings reveal significantly enhanced theta-band connectivity and general abnormal cortical synchrony in POD patients.
Significance:
These EEG-based features may serve as potential biomarkers and provide a foundation for machine learning models to enable early POD risk prediction.
More Related Videos
08:25Combined Invasive Subcortical and Non-invasive Surface Neurophysiological Recordings for the Assessment of Cognitive and Emotional Functions in Humans
Published on: May 19, 2016
13:12Translational Brain Mapping at the University of Rochester Medical Center: Preserving the Mind Through Personalized Brain Mapping
Published on: August 12, 2019