Which Comes First in Sports Vision Training: The Software or the Hardware Update? Utility of Electrophysiological Measures in Monitoring Specialized Visual Training in Youth Athletes
Что первично в тренировке спортивного зрения: обновление «программного обеспечения» или «аппаратуры»? Полезность электрофизиологических мер для мониторинга специализированной визуальной тренировки юных спортсменов
2021-10-06
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EEGGo/No-GoHand Reaction timeNear-Far QuicknessNike/Senaptec Sensory StationOptometric Vision Therapy (OVT)P100 amplitudeP100 latencyPerception spanVEPcross-over designoculomotor trainingsports vision trainingtheta-gamma ratiovisual hardwarevisual softwareyouth ice hockey players
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Abstract (AI)
In the present study we combined popular methods of sports vision training (SVT) with traditional oculomotor protocols of Optometric Vision Therapy (OVT) and electrophysiological indexes of EEG and VEP activity to monitor training progress and changes in performance of youth ice hockey players without the history of concussion. We hypothesized that administration of OVT protocols before SVT training may result in larger performance improvements compared to the reverse order due to the initial strengthening of visual hardware capable of handling greater demands during training of visuomotor integration and information processing skills (visual software). In a cross-over design 53 youth ice hockey players (ages 13-18) were randomly assigned to one of the two training groups. Group one (hardware-software group) completed 5 weeks of oculomotor training first followed by 5 weeks of software training. For group 2 (software-hardware) the order of procedures were reversed. After 10 weeks of training both groups significantly improved their performance on all but one measure of the Nike/Senaptec Sensory station measures. Additionally, the software-hardware training order resulted in significantly lower frontal theta-to-gamma amplitude ratios on the Nike/Senaptec test of Near-Far Quickness as well as in faster P100 latencies. Both training orders also resulted in significant decreases in post-treatment P100 amplitude to transient VEP stimuli as well as decreased theta-gamma ratios for perception span, Go/No-Go and Hand Reaction time. The observed changes in the electrophysiological indexes in the present study are thought to reflect greater efficiency in visual information processing and cognitive resource allocation following 10 weeks of visual training. There is also some evidence of the greater effectiveness of the software-hardware training order possibly due to the improved preparedness of the oculomotor system in the youth athletes for administration of targeted protocols of the Optometric Vision Therapy.
Key Findings
1
After 10 weeks, both training orders significantly improved performance on all but one Nike/Senaptec Sensory Station measure.
2
Both training orders caused significant decreases in P100 amplitude to transient VEP stimuli and decreased theta-gamma ratios for perception span, Go/No-Go, and hand reaction time.
3
Combining Optometric Vision Therapy (OVT) oculomotor protocols with sports vision training (SVT) and EEG/VEP monitoring produced measurable training-related changes in youth ice hockey players.
4
Electrophysiological changes are interpreted as reflecting greater efficiency in visual information processing and cognitive resource allocation after 10 weeks of visual training.
5
Software-then-hardware (SVT then OVT) order produced significantly lower frontal theta-to-gamma amplitude ratios on the Near-Far Quickness test and faster P100 latencies compared to the reverse order.
Research Object
Youth ice hockey players undergoing combined sports vision training (SVT) and optometric vision therapy (OVT)
Research Subject
Effects of training order (OVT before SVT vs SVT before OVT) on performance measures and electrophysiological indices (EEG/VEP: P100 latency/amplitude, frontal theta-gamma ratios) reflecting visual information processing and visuomotor integration
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2021-10-06
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