Association of sleep and anaesthesia EEG biomarkers with preoperative MoCA score: A pilot study.

Touchard, Cyril; Guimard, Pauline; Guessous, Karim; Aubin, Oriane Saint; Levé, Charlotte; Joachim, Jona; Elayeb, Kenza; Mebazaa, Alexandre et al. · Acta Anaesthesiol Scand · 2023

case_series · Level IV

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Abstract

Preoperative cognitive impairments increase the risk of postoperative complications. The electroencephalogram (EEG) could provide information on cognitive vulnerability. The feasibility and clinical relevance of sleep EEG (EEG<sub>sleep</sub> ) compared to intraoperative EEG (EEG<sub>intraop</sub> ) in cognitive risk stratification remains to be explored. We investigated similarities between EEG<sub>sleep</sub> and EEG<sub>intraop</sub> vis-a-vis preoperative cognitive impairments. Pilot study including 27 patients (63 year old [53.5, 70.0]) to whom Montreal cognitive assessment (MoCA) and EEG<sub>sleep</sub> were administered 1 day before a propofol-based general anaesthesia, in addition to EEG<sub>intraop</sub> acquisition from depth-of-anaesthesia monitors. Sleep spindles on EEG<sub>sleep</sub> and intraoperative alpha-band power on EEG<sub>intraop</sub> were particularly explored. In total, 11 (41%) patients had a MoCA <25 points. These patients had a significantly lower sleep spindle power on EEG<sub>sleep</sub> (25 vs. 40 μv<sup>2</sup> /Hz, p = .035) and had a weaker intraoperative alpha-band power on EEG<sub>intraop</sub> (85 vs. 150 μv<sup>2</sup> /Hz, p = .001) compared to patients with normal MoCA. Correlation between sleep spindle and intraoperative alpha-band power was positive and significant (r = 0.544, p = .003). Preoperative cognitive impairment appears to be detectable by both EEG<sub>sleep</sub> and EEG<sub>intraop</sub> . Preoperative sleep EEG to assess perioperative cognitive risk is feasible but more data are needed to demonstrate its benefit compared to intraoperative EEG.

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