Improvements in body composition and postural control in children with obesity following an AI-assisted, deficit-oriented exercise intervention
- Journal
- Frontiers in public health (Q1)
- Published
- 17 September 2026
- Study design
- Randomized controlled trial
- Evidence level
- Level 1, High (CEBM 1b)
- Authors
- Lixin Cao, Xingxing Cheng, Changqing Deng, Yuexin Ren, Shunjiu Zhang, Lunyu Li
- PMID
- 42824389
- DOI
- 10.3389/fpubh.2026.1886988
Why clinicians should know about it
- Picked for Pediatrics and Child Health (top studies of the week, 4 October 2026): High-quality evidence in a top journal
Abstract
OBJECTIVE: To investigate the effects of an AI-assisted, individualized exercise management model on body composition, physical fitness, and postural stability in children with obesity, providing a feasibility foundation for subsequent randomized controlled trials. METHODS: A single-group, pre-post pilot study was conducted. Nineteen children with simple obesity (7 girls, 12 boys; mean age 10.11 ± 2.0 years) from West China Second Hospital (July-September 2024) completed a 12-week exercise intervention. The AI system generated individualized FITT-VP prescriptions based on baseline assessments and dynamically adjusted them via training feedback, with on-site coach implementation. Outcomes were measured pre- and post-intervention. RESULTS: All 19 children completed the intervention with no adverse events. Primary outcomes: BMI decreased from 25.29 ± 3.56 to 23.64 ± 3.60 kg/m2 (p < 0.001, d = 0.46), and body fat mass from 21.06 ± 6.70 to 17.94 ± 6.69 kg (p < 0.001, d = 0.47). Secondary outcomes: waist circumference (p < 0.01, d = 0.31), grip strength (p < 0.01, d = 0.54), 1-min jump rope (p < 0.01, d = 1.15), 1-min sit-ups (p < 0.05, d = 1.00), and sit-and-reach (p < 0.05, d = 0.67) all improved significantly. In the eight-directional postural control assessment, endpoint excursion and maximum excursion exhibited improvement trends in all directions, and reaction time was significantly reduced in four directions (p < 0.05). In the Sensory Organization Test, the mean balance percentages for SOT-4 and SOT-5 significantly increased (p < 0.01, d = 1.05 and d = 0.58, respectively), and the composite balance score increased by 24.15% (p < 0.001, d = 1.28). The visual ratio significantly increased by 19.5% (p < 0.05, d = 0.80), whereas the vestibular ratio increased by 15.3%, approaching but not reaching statistical significance (p = 0.054, d = 0.43). CONCLUSION: The AI-assisted, deficit-oriented exercise intervention demonstrated good feasibility and safety in this cohort of children with obesity. The observed improvements in body composition, motor function, and postural control indicators provide a feasibility basis for subsequent confirmatory trials on precision exercise management for childhood obesity.
Abstract as published, via PubMed.
For healthcare professionals. The summary is generated by AI from the published abstract, and the evidence level is assigned automatically from the study design on the Oxford CEBM hierarchy. Neither is medical advice. Read the full paper before changing practice.