Basic & Clinical Medicine ›› 2026, Vol. 46 ›› Issue (10): 1384-1391.doi: 10.16352/j.issn.1001-6325.2026.10.1384

• Original Articles • Previous Articles     Next Articles

Longitudinal study of multimodal quantitative EEG characterization in Kleine-Levin syndrome

ZHANG Le, HUANG Yan, CHEN Jianhua*   

  1. Department of Neurology, Peking Union Medical College Hospital, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing 100730, China
  • Received:2026-07-14 Revised:2026-08-22 Online:2026-10-05 Published:2026-09-18
  • Contact: *chagmail@163.com

Abstract: Objective To characterize longitudinal quantitative electroencephalography(qEEG) changes from the symptomatic to recovery phase of Kleine-Levin syndrome (KLS) and examine the temporal relationship between clinical and electrophysiological recovery. Methods Longitudinal changes in brain electrical dynamics during a KLS episode were investigated using quantitative EEG approaches. A 14-year-old boy underwent serial EEG recordings on illness Days 2, 3, 4, 5, 8 and 14. Twelve age-matched healthy participants provided reference distributions. Six-minute artifact-cleaned eyes-closed segments were analyzed by conventional EEG assessment, microstate analysis, power spectral density (PSD), and correlation-based Omega complexity. The six KLS sessions were treated as repeated observations from one individual, with healthy reference-based standardized scores and single-case methods used for exploratory comparison. Results Days 2-5 showed paroxysmal generalized theta-delta slowing, poor preservation of conventional NREM markers, and occasional posterior sharp-and-slow-wave activity. Low-frequency intermittent photic stimulation elicited a self-limited bilateral occipital photoparoxysmal response. Clinical hypersomnia resolved by Day 8, although mild residual slowing remained; the conventional EEG was overall normal by Day 14. Global microstate mean duration decreased from 122.44-139.07 ms on Days 2-5 to 89.47 ms on Day 8 and 80.28 ms on Day 14, while occurrence increased from 7.19-8.17/s to 11.18/s and 12.46/s, respectively. PSD showed marked symptomatic delta predominance with progressive alpha-beta recovery. Omega complexity showed frequency- and region-dependent spatial changes. Conclusions KLS is associated with reversible temporal, spectral and spatial EEG abnormalities. Clinical recovery is preceded complete electrophysiological normalization, supporting quantitative EEG as a candidate tool for tracking disease-state transitions.

Key words: Kleine-Levin syndrome, quantitative EEG, EEG microstate, power spectral density, Omega complexity

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