Control inhibitorio en el deporte: una revisión sistemática sobre su relación con el rendimiento y la adaptación conductual post-error
DOI:
https://doi.org/10.70208/3007.8245.v6.n1.432Palabras clave:
control inhibitorio, rendimiento deportivo, adaptación conductual post-errorResumen
El presente estudio realiza una revisión sistemática de la evidencia sobre el control inhibitorio en el deporte y su relación con el rendimiento y la adaptación conductual. Se analizaron 23 estudios empíricos identificados en las bases de datos Scopus y PubMed, considerando deportistas de distintas disciplinas, edades y niveles de expertise. Los resultados muestran que los deportistas presentan un mejor desempeño en tareas de control inhibitorio en comparación con no deportistas, evidenciado en menores tiempos de reacción y mayor precisión. Asimismo, se observaron asociaciones positivas entre el control inhibitorio y variables relevantes del rendimiento deportivo, como la toma de decisiones, la anticipación y la ejecución motora. No obstante, los hallazgos no son completamente consistentes, sugiriendo que esta relación está modulada por factores como el tipo de deporte, el nivel de experiencia y la especificidad de las tareas utilizadas. Por otra parte, el control inhibitorio se vincula con procesos de regulación conductual y ajuste posterior al error, aunque esta línea aún presenta evidencia limitada. Finalmente, los estudios de intervención indican que esta capacidad puede ser entrenada, especialmente mediante prácticas que integren demandas cognitivas y motoras. Estos hallazgos destacan su relevancia para el rendimiento deportivo y su potencial aplicación en el entrenamiento.
Citas
Almeida-Neto, P. F., Campos, N. M. R., et al. (2022). Higher levels of inhibitory control are associated with superior neuromuscular performance in adolescent athletes. Sport Sciences for Health, 18, 799-806. https://doi.org/10.1007/s11332-021-00858-0
Azhan, M. A. N., Azaman, A., Khairizam, S. H. S. M., Miswan, M. S., Hasan, H., & Zainuddin, N. F. (2024). Insignificant influence of sport participation on inhibitory control among student athletes in the stop signal task. En Z. Mohamed et al. (Eds.), Proceedings of the 2nd International Conference on Innovation and Technology in Sports (ICITS 2023). Springer. https://doi.org/10.1007/978-981-97-3741-3_6
Bravi, R., Gavazzi, G., Benedetti, V., Giovannelli, F., Grasso, S., Panconi, G., Viggiano, M. P., & Minciacchi, D. (2022). Effect of different sport environments on proactive and reactive motor inhibition: A study on open- and closed-skilled athletes via mouse-tracking procedure. Frontiers in Psychology, 13, 1042705. https://doi.org/10.3389/fpsyg.2022.1042705
Brimmell, J., Lee, N., & Spokes, M. (2026). The influence of sport expertise on response and cognitive inhibition. Perceptual and Motor Skills, 0(0), 1-22. https://doi.org/10.1177/00315125261418880
Chen, J. T., Chang, Y. H., Barquero, C., Teo, M. M. J., Kan, N. W., & Wang, C. A. (2025). Microsaccade behavior associated with inhibitory control in athletes. Psychology of Sport and Exercise, 78, 102818.
Diamond, A. (2013). Executive functions. Annual Review of Psychology, 64, 135–168. https://doi.org/10.1146/annurev-psych-113011-143750
Eriksson, L. J. K., Sundin, Ö., & Jansson, B. (2023). Exploring response inhibition, the behavioral inhibition system and possible sex differences in athletes and non-athletes. International Journal of Environmental Research and Public Health, 20(14), 6340. https://doi.org/10.3390/ijerph20146340
Formenti, D., Trecroci, A., Duca, M., Cavaggioni, L., D’Angelo, F., Passi, A., Longo, S., & Alberti, G. (2021). Differences in inhibitory control in children practicing open and closed skill sports. Scientific Reports, 11, 4033. https://doi.org/10.1038/s41598-021-83599-1
González, G., Madinabeitia, I., Ureña, N., & Alarcón, F. (2021). Relative age effect and inhibitory control in basketball. Revista de Psicología del Deporte, 30(2), 273–279.
Huang, Q., Mao, X., Shi, J., Pan, J., & Li, A. (2024). Enhanced Cognitive Inhibition in Table Tennis Athletes: Insights from Color-Word and Spatial Stroop Tasks. Brain Sciences, 14(5), 443. https://doi.org/10.3390/brainsci14050443
Jacobson, J., & Matthaeus, L. (2014). Athletics and executive functioning: How athletic participation and sport type correlate with cognitive performance. Psychology of Sport and Exercise, 15, 521–527. https://doi.org/10.1016/j.psychsport.2014.05.005
Ludyga, S., Mücke, M., Andrä, C., Gerber, M., & Pühse, U. (2021). Neurophysiological correlates of interference control and response inhibition processes in children and adolescents engaging in open- and closed-skill sports. Journal of Sport and Health Science, 11(2), 224-233. https://doi.org/10.1016/j.jesf.2021.01.001
Ludyga, S., Tränkner, S., Gerber, M., & Pühse, U. (2021). Effects of judo on neurocognitive indices of response inhibition in preadolescent children: A randomized controlled trial. Medicine & Science in Sports & Exercise, 53(8), 1648–1655. https://doi.org/10.1249/MSS.0000000000002625
Nakamoto, H., & Mori, S. (2008). Sport-specific decision-making in a Go/No-Go reaction task: Differences among nonathletes and baseball and basketball players. Perceptual and Motor Skills, 106(1), 163–170. https://doi.org/10.2466/pms.106.1.163-170
Pesce, C., Crova, C., Cereatti, L., Casella, R., & Bellucci, M. (2009). Physical activity and mental performance in preadolescents: Effects of acute exercise on free-recall memory. Journal of Sport & Exercise Psychology, 31(3), 397–415. https://doi.org/10.1123/jsep.31.3.397
Staiano, W., Sternberg, L. M., Ferri-Caruana, A., Salazar-Bonet, L. R., Romagnoli, M., Henriksen, K., & Kirk, U. (2026). Overcoming mental fatigue through mindfulness: Improving physical and cognitive performance in elite handball players. Journal of Science and Medicine in Sport, 29(1), 91–99. https://doi.org/10.1016/j.jsams.2025.08.004
Sullivan, R., Uiga, L., Masters, R., Anson, G., & Nieuwenhuys, A. (2025). Influence of an audience on conscious motor processing and performance during a go-only and stop-signal soccer penalty shooting task. International Journal of Sport and Exercise Psychology, 23(4), 694–709. https://doi.org/10.1080/1612197X.2024.2336164
Taddei, F., Bultrini, A., Spinelli, D., & Di Russo, F. (2012). Neural correlates of attentional and executive processing in middle-age fencers. Medicine & Science in Sports & Exercise, 44(6), 1057–1066. https://doi.org/10.1249/MSS.0b013e318247f2c7
Verburgh, L., Scherder, E. J. A., van Lange, P. A. M., & Oosterlaan, J. (2014). Executive functioning in highly talented soccer players. PLoS ONE, 9(3), e91254. https://doi.org/10.1371/journal.pone.0091254
Vestberg, T., Gustafson, R., Maurex, L., Ingvar, M., & Petrovic, P. (2012). Executive functions predict the success of top-soccer players. PLoS ONE, 7(4), e34731. https://doi.org/10.1371/journal.pone.0034731
Vestberg, T., Reinebo, G., Maurex, L., Ingvar, M., & Petrovic, P. (2017). Core executive functions are associated with success in young elite soccer players. PLoS ONE, 12(2), e0170845. https://doi.org/10.1371/journal.pone.0170845
Wang, C.-H., Chang, C.-C., Liang, Y.-M., Shih, C.-M., Chiu, W.-S., Tseng, P., Hung, D. L., Tzeng, O. J. L., & Muggleton, N. G. (2013). Open vs. closed skill sports and the modulation of inhibitory control. Journal of Sports Sciences, 31(7), 733–743. https://doi.org/10.1080/02640414.2012.753918
Wickemeyer, C., Güldenpenning, I., & Weigelt, M. (2024). Action inhibition in a sport-specific paradigm: Examining the limits of action control in basketball. Psychological Research, 88(7), 2121–2137. https://doi.org/10.1007/s00426-024-02010-2
Williams, R. A., Cooper, S. B., Dring, K. J., Hatch, L., Morris, J. G., Sunderland, C., & Nevill, M. E. (2020). Effect of football activity and physical fitness on information processing, inhibitory control and working memory in adolescents. BMC Public Health, 20, 1398. https://doi.org/10.1186/s12889-020-09484-w
Wu, C. H., Zhao, Y. D., Yin, F. Q., Yi, Y., Geng, L., & Xu, X. (2024). Mental fatigue and sports performance of athletes: Theoretical explanation, influencing factors, and intervention methods. Behavioral Sciences, 14(12), 1125. https://doi.org/10.3390/bs14121125
Yu, C.-C., Muggleton, N. G., Chen, C.-Y., Ko, C.-H., & Liu, S. (2021). The comparisons of inhibitory control and post-error behaviors between different types of athletes and physically inactive adults. PLoS ONE, 16(8), e0256272. https://doi.org/10.1371/journal.pone.0256272
Zhongfan, L., Inomata, K., & Takeda, T. (2002). Soccer players' and closed-skill athletes' execution of a complex motor skill. Perceptual and Motor Skills, 95(1), 213–218. https://doi.org/10.2466/pms.2002.95.1.213
Zhu, M., Pi, Y., Zhang, J., & Gu, N. (2022). The superior response speed of table tennis players is associated with proactive inhibitory control. PeerJ, 10, e13493. https://doi.org/10.7717/peerj.13493













