Risk Factors and Efficacy of Combined Neurometabolic–Digital Cognitive Training for Perioperative Neurocognitive Disorder in School-Age Children After General Anesthesia: A Prospective Cohort Study

Durdona A. Zakirova *

Department of Neurology, Tashkent State Medical University, Tashkent, Uzbekistan.

Yokutkhon N. Madjidova

Department of Neurology, Tashkent State Medical University, Tashkent, Uzbekistan.

*Author to whom correspondence should be addressed.


Abstract

Aims: To identify independent risk factors for perioperative neurocognitive disorder (PND) in school-age children after general anaesthesia, develop a predictive risk model, and evaluate the clinical efficacy of combined neurometabolic pharmacotherapy and digital cognitive training in children with confirmed PND.

Study Design: A prospective cohort study with a nested, non-randomised, two-arm treatment comparison.

Place and Duration of Study: The study was conducted in the Departments of Pediatric Surgery, Anesthesiology-Reanimatology, and Dermatology at the Clinic of Tashkent Pediatric Medical Institute, Tashkent, Uzbekistan, from March 2024 to January 2025.

Methodology: A total of 206 school-age children aged 7–17 years were studied: 181 underwent elective non-cardiac surgery under general anaesthesia, while 25 healthy children served as normative controls. PND was defined on postoperative day 7 using the ISPOCD composite Z-score method (|Z| ≥ 1.96 on at least two of seven instruments). Independent predictors were modelled using multivariable logistic regression. Among 56 children with confirmed PND, 30 received one month of combined therapy (hopantenic acid [Pantogam] plus the NeyroCog.uz digital cognitive-training platform), while 26 received standard follow-up. The groups were compared using analysis of covariance (ANCOVA) adjusted for baseline scores, and effect sizes were expressed as Cohen’s d.

Results: PND occurred in 56 of 181 children (30.9%). Independent predictors were the number of anaesthetic agents used (OR=3.81, P<.001), premorbid neurological background (OR=3.62, P=.02), anaesthesia duration per minute (OR=1.02, P<.001), and age, which was associated with lower odds of PND (OR=0.67, P<.001). The composite model showed good discrimination (AUC=0.78; Nagelkerke R²=0.45). Combined therapy produced significantly greater covariate-adjusted gains than standard follow-up in selective attention (Δadj=15.13, P<.001), verbal memory (Δadj=16.03, P<.001), psychomotor speed, working memory, and auditory gnosis (all P<.001; Cohen’s d=1.0–2.9). No significant between-group differences were observed in clinical-neurological status or EEG (P=.37 and P=.77, respectively).

Conclusion: The four-factor model showed potentially useful discrimination for PND risk. Combined neurometabolic–digital cognitive rehabilitation was associated with large, domain-selective gains compared with standard observation. These findings support external validation of the risk model and further randomised evaluation of the combined rehabilitation protocol before routine clinical adoption.

Keywords: Perioperative neurocognitive disorder, paediatric anaesthesia, school-age children, general anaesthesia, risk prediction, anaesthetic agents, hopantenic acid, digital cognitive training, cognitive rehabilitation, prospective cohort study


How to Cite

Zakirova, Durdona A., and Yokutkhon N. Madjidova. 2026. “Risk Factors and Efficacy of Combined Neurometabolic–Digital Cognitive Training for Perioperative Neurocognitive Disorder in School-Age Children After General Anesthesia: A Prospective Cohort Study”. Journal of Advances in Medicine and Medical Research 38 (8):192-201. https://doi.org/10.9734/jammr/2026/v38i86182.

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