Artificial Intelligence Applications in the Prediction and Management of Pediatric Asthma Exacerbation: A Systematic

Fatima Mahmoud Osman Mohmed1, Wafa Elrasheed Osman Homaida2, Yousra Bala Babkir Abd Alla2

  • 1General Medicine, Sharourah General Hospital, Sharourah, SAU.

Cureus
|October 20, 2025
PubMed

Insights

Artificial intelligence (AI) effectively predicts pediatric asthma exacerbations, outperforming traditional methods. Multimodal data shows the most promise, but challenges like bias and validation remain for clinical integration.

Area of Science:

  • Medical Informatics
  • Pediatric Pulmonology
  • Artificial Intelligence in Healthcare

Background:

  • Pediatric asthma exacerbations pose significant global health challenges.
  • Artificial intelligence (AI) offers potential for improved prediction and management.
  • Current evidence on AI for pediatric asthma is fragmented.

Purpose of the Study:

  • To systematically review and synthesize literature on AI applications for pediatric asthma exacerbation prediction and management.
  • To evaluate the performance, clinical utility, and methodological quality of AI models.
  • To identify key challenges and future research directions.

Main Methods:

  • Systematic review following PRISMA 2020 guidelines.
  • Searched major databases (PubMed, Scopus, Embase, etc.) for studies from 2020-2025.
  • Assessed risk of bias using ROBINS-I and Cochrane RoB 2 tools.

Main Results:

  • Eight studies demonstrated AI's effectiveness in predicting pediatric asthma exacerbations, surpassing traditional methods.
  • Multimodal data integration yielded superior model performance.
  • Most studies exhibited a low risk of bias, but limitations included data biases and small sample sizes.

Conclusions:

  • AI shows significant potential for predicting pediatric asthma exacerbations, especially with multimodal data.
  • Addressing algorithmic bias, prospective validation, and standardizing metrics are crucial for clinical integration.
  • Future research should focus on equitable model development and real-world clinical impact assessment.

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