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Updated: Jun 12, 2025

Measuring Engagement of Spectators of Social Digital Games
Published on: July 3, 2021
Dynamic interactions of physiological systems during competitive gaming: insights from network physiology - case
Andreas Stamatis1,2, Grant B Morgan3, Jorge C Reyes3
1Health and Sport Sciences, University of Louisville, Louisville, KY, United States.
Abstract:
This study investigates the dynamic interactions between physiological systems during competitive gaming, utilizing a Network Physiology approach. By examining the physiological responses of a gamer with attention-deficit/hyperactivity disorder playing a real-time strategy game, we explore the relationships and temporal lag effects between pupil dilation, skin temperature, and heart rate. Our findings highlight the interconnectedness of these physiological systems and demonstrate how different physiological states are associated with unique patterns of network interactions. The study employs the concept of Time Delay Stability towards a deeper understanding of the complex dynamics involved. This research contributes to the growing field of Network Physiology by offering new insights into the physiological underpinnings of competitive gaming, potentially informing targeted training and recovery protocols for eSports athletes.
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