DOI: 10.1093/schbul/sbag159.151 ISSN: 0586-7614

Promotion of Adolescent Psychological Health through Digital Twin Intelligent Sport System

Fenghua Wu, Kai Ma, Na Meng, Guang Hao, Shuo Gu

Abstract

Objective

In 2025, Chinese Ministry of Education issued "Ten Measures to Further Strengthen Psychological Health Work of Primary and Secondary School Students", emphasizing their daily comprehensive physical activity time and all members sport competitions.

Methods

Sculling pool is desired facility that can ensure rowing sport anytime and anywhere. However, it does not produce true boat movement and cannot used for competition, making it difficult to quantify the rowing effects. This study developed an digital twin intelligent sport system for sculling pool simulated rowing competition. A multimodal motion capture system was used to collect comprehensive information on both rower and sculling pool. A parallel simulation metaverse space was constructed that containing natively digital sports scene where an embodied motion model was built to drive digital twins reproducing rowing sport. Then, a sport health indicator analysis system base on large model was implanted to monitor rowers' physical fitness and psychological health status in real-time so as to form personalized health growth profiles, as well as generate intelligent psychological health exercise guidance.

Results

The proposed system enables sculling pool rowers to perceive themselves as being on a real on-water rowing competition scene. It is more conducive to accurately grasping the psychological health status of adolescents, for furtherly providing targeted training for them based on the exercise intervention suggestion prompted from the system.

Conclusion

The digital twin intelligent sport system developed in this study provides an innovative platform to improving physical and psychological health of adolescents through AI-driven scientific evaluation and precise guidance.

Acknowledgements

This research was financially supported by Liaoning Natural Science Foundation Projects: Investigation on the Performance and Mechanism of Bismuth Oxyhalide-Based Composite Materials for Photocatalytic Tumor Lysis of Exogenous Organic Bodies(2024-MS-254) and Research on embodied intelligent motion representation of the metaverse field paddle pool based numerical system(2024-MS-255), as well as Liaoning Province Applied Basic Research Program Project: Research on Multimodal Embodied Intelligent Perception and Sports Evaluation Technology for Rowing Sculling Pool(1763689282436).

Corresponding Author

Fenghua Wu, Shenyang City University, Shenyang, China.

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