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"How Is My Child's Asthma?" Digital Phenotype and Actionable Insights for Pediatric Asthma

Utkarshani Jaimini1, Krishnaprasad Thirunarayan1, Maninder Kalra2

  • 1Department of Computer Sciene, Ohio Center of Excellence in Knowledge-enabled Computing (Kno.e.sis), Wright State University, Dayton, OH, United States.

Insights

Continuous digital monitoring using the kHealth kit provides timely asthma insights for children. This system improves asthma management by tracking symptoms and adherence, outperforming infrequent traditional assessments.

Area of Science:

  • Digital health
  • Pediatric respiratory medicine
  • Biomedical informatics

Background:

  • Traditional asthma management relies on infrequent clinical visits and questionnaires, limiting timely assessment of control and treatment effectiveness.
  • Continuous monitoring of symptoms, activity, sleep, and adherence offers a more precise approach to identifying asthma triggers and evaluating treatment.
  • Digital phenotyping leverages personal devices for continuous, in-situ quantification of individual health phenotypes.

Purpose of the Study:

  • To evaluate the usability and feasibility of the kHealth system for continuous, comprehensive monitoring of pediatric asthma.
  • To assess the system's ability to collect clinically relevant data for diagnosing and intervening in children's asthma care plans.
  • To derive actionable insights for personalized and cohort-level asthma management using novel scores.

Main Methods:

  • The kHealth kit includes a mobile app, wearable sensors (Fitbit), a peak flow meter, and an indoor air quality monitor.
  • Data collected via the kHealth kit are stored in a cloud platform and visualized on an interactive dashboard.
  • The study analyzed data from 95 children over 1- or 3-month periods, validating Digital Phenotype Scores against traditional Asthma Control Test scores.

Main Results:

  • At the cohort level, 37% of children had poorly controlled asthma, with compliance issues identified in 50% of those with poor control.
  • A significant negative correlation (Kendall Tau = -0.509, P<.01) was observed between Asthma Control Test scores and the Digital Phenotype Score.
  • The study introduced the Digital Phenotype Score and Controller Compliance Score to summarize patient condition and treatment adherence.

Conclusions:

  • The kHealth kit effectively collects clinically relevant data for pediatric asthma patients.
  • Continuous digital monitoring via the kHealth system provides clinicians with more timely and detailed insights compared to infrequent clinic visits.
  • The Digital Phenotype Score and Controller Compliance Score offer valuable, data-driven evidence for managing childhood asthma.
Abstract

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