From Synapses to Stadiums: How Brain Physiology Informs Sports Training for Optimal Performance and a Sound Mind

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Autore principale: Mahesh Kumar Yadav1, Dr. K. Rajeswar Dutt2, Ankita Singh3, Chandan Pal4, Ronit Tirkey4, Rohit Sharma4, Abhijit Kumar4, Udit Raj4, Sumit Shah Gupta4, Jeet Gorain4, Rajnish Raj4, Shahid Afridi4, Suman Roy4, Ashish Ranjan Yaduvendu4, Arnab Roy5*
Natura: Recurso digital
Pubblicazione: Zenodo 2025
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author Mahesh Kumar Yadav1, Dr. K. Rajeswar Dutt2, Ankita Singh3, Chandan Pal4, Ronit Tirkey4, Rohit Sharma4, Abhijit Kumar4, Udit Raj4, Sumit Shah Gupta4, Jeet Gorain4, Rajnish Raj4, Shahid Afridi4, Suman Roy4, Ashish Ranjan Yaduvendu4, Arnab Roy5*
author_facet Mahesh Kumar Yadav1, Dr. K. Rajeswar Dutt2, Ankita Singh3, Chandan Pal4, Ronit Tirkey4, Rohit Sharma4, Abhijit Kumar4, Udit Raj4, Sumit Shah Gupta4, Jeet Gorain4, Rajnish Raj4, Shahid Afridi4, Suman Roy4, Ashish Ranjan Yaduvendu4, Arnab Roy5*
contents <p><span>This comprehensive review delves into the intricate interplay between neuroscience and athletic performance, elucidating how advancements in understanding brain physiology can revolutionize sports training methodologies. By examining current research on neuroplasticity, motor learning, cognitive adaptation, and psychological resilience, this study highlights the critical role of the brain in optimizing athletic performance. Neuroplasticity, the brain's ability to reorganize itself by forming new neural connections, is fundamental in enhancing motor skills and adapting to the physical demands of sports. Motor learning research underscores the importance of repetitive practice and feedback in refining athletic techniques, while cognitive adaptation explores how athletes process information and make split-second decisions during competition. Psychological resilience, the capacity to recover from setbacks and maintain performance under pressure, is also scrutinized for its impact on long-term athletic success. The review also synthesizes findings from neuroscience, sports psychology and performance studies to provide evidence-based recommendations for optimizing training protocols. It emphasizes the integration of cognitive and physical training to harness the brain's potential for improving athletic outcomes. Additionally, the study addresses the importance of maintaining mental health in competitive sports, advocating for strategies that mitigate stress, prevent burnout, and promote overall well-being. By bridging the gap between neuroscience and sports science, this review offers a holistic approach to athlete development, ensuring that training regimens are not only physically demanding but also cognitively and psychologically enriching.</span></p>
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spellingShingle From Synapses to Stadiums: How Brain Physiology Informs Sports Training for Optimal Performance and a Sound Mind
Mahesh Kumar Yadav1, Dr. K. Rajeswar Dutt2, Ankita Singh3, Chandan Pal4, Ronit Tirkey4, Rohit Sharma4, Abhijit Kumar4, Udit Raj4, Sumit Shah Gupta4, Jeet Gorain4, Rajnish Raj4, Shahid Afridi4, Suman Roy4, Ashish Ranjan Yaduvendu4, Arnab Roy5*
Neuroplasticity, Motor Learning, Cognitive Adaptation, Psychological Resilience, Athletic Performance
<p><span>This comprehensive review delves into the intricate interplay between neuroscience and athletic performance, elucidating how advancements in understanding brain physiology can revolutionize sports training methodologies. By examining current research on neuroplasticity, motor learning, cognitive adaptation, and psychological resilience, this study highlights the critical role of the brain in optimizing athletic performance. Neuroplasticity, the brain's ability to reorganize itself by forming new neural connections, is fundamental in enhancing motor skills and adapting to the physical demands of sports. Motor learning research underscores the importance of repetitive practice and feedback in refining athletic techniques, while cognitive adaptation explores how athletes process information and make split-second decisions during competition. Psychological resilience, the capacity to recover from setbacks and maintain performance under pressure, is also scrutinized for its impact on long-term athletic success. The review also synthesizes findings from neuroscience, sports psychology and performance studies to provide evidence-based recommendations for optimizing training protocols. It emphasizes the integration of cognitive and physical training to harness the brain's potential for improving athletic outcomes. Additionally, the study addresses the importance of maintaining mental health in competitive sports, advocating for strategies that mitigate stress, prevent burnout, and promote overall well-being. By bridging the gap between neuroscience and sports science, this review offers a holistic approach to athlete development, ensuring that training regimens are not only physically demanding but also cognitively and psychologically enriching.</span></p>
title From Synapses to Stadiums: How Brain Physiology Informs Sports Training for Optimal Performance and a Sound Mind
topic Neuroplasticity, Motor Learning, Cognitive Adaptation, Psychological Resilience, Athletic Performance
url https://doi.org/10.5281/zenodo.15051500