Cognitive performance determinants in competitive fencing: a systematic review

Abstract

Competitive fencing is an open-skill combat sport in which perception, anticipation, decision-making, and action occur under severe temporal pressure. This review synthesised evidence on cognitive performance determinants in fencing, with emphasis on sport-specific anticipation and visual attention, reaction and response selection, and trainability. A structured Scopus search was conducted in accordance with PRISMA 2020 and identified 403 records; 15 duplicates were removed, 388 titles and abstracts were screened, 70 full texts were assessed, and 18 studies were included. Eligibility was defined using a PICOS framework, and study quality and relevance were appraised with a prespecified four-domain FICO rubric (Focus, Information, Context, Outcome). Because the included studies used heterogeneous designs and non-comparable outcome operationalisations, evidence was synthesised narratively and thematically following the Thomas and Harden approach rather than quantitatively pooled. The evidence indicates that expertise is expressed primarily through sport-specific anticipation, weapon-dependent visual search, and efficient response selection and inhibition, whereas generic simple reaction time is less discriminative. Training interventions improved attention or broader cognitive function, but transfer to isolated reaction-time outcomes was inconsistent. The current screening record does not contain a reproducible inter-rater agreement statistic; accordingly, no Cohen's kappa value is reported without verification. Larger longitudinal studies, standardised fencing-specific measures, and ecologically valid designs are needed.

Keywords
  • Fencing, Perceptual cognitive skills, Reaction time, Anticipation, Decision-making
References
  1. Akbaş, A., Marszałek, W., Bacik, B., & Juras, G. (2021). Two Aspects of Feedforward Control During a Fencing Lunge: Early And Anticipatory Postural Adjustments. Frontiers In Human Neuroscience, 15, Article 638675. Https://Doi.Org/10.3389/Fnhum.2021.638675
  2. Akpinar, S., Sainburg, R. L., Kirazci, S., & Przybyla, A. (2015). Motor Asymmetry In Elite Fencers. Journal Of Motor Behavior, 47(4), 302–311. Https://Doi.Org/10.1080/00222895.2014.981500
  3. Akpinar, S., & Beyaz, O. (2018). Perceptual And Motor Performances Between Fencers And Non-Fencers. Sport Mont, 16(3), 3–7. Https://Doi.Org/10.26773/Smj.181001
  4. Bagot, P., Fournier, J. F., Kerivel, T., Bossard, C., Kermarrec, G., Martinent, G., & Bernier, M. (2023). Visual Search Strategies Of Elite Fencers: An Exploratory Study In Ecological Competitive Situation. Journal Of Functional Morphology And Kinesiology, 8(3), Article 106. Https://Doi.Org/10.3390/Jfmk8030106
  5. Barañano, R., Moreno, R., & Barañano, J. (2025). Crossed Laterality And Performance In Fencing: An Analysis Of Ocular Dominance, Handedness, And Reaction Times In Fencers. Revista Andaluza De Medicina Del Deporte, 18(4), 139–144. Https://Doi.Org/10.33155/Ramd.V18i4.1255
  6. Bianco, V., Di Russo, F., Perri, R. L., & Berchicci, M. (2017). Different Proactive And Reactive Action Control In Fencers’ And Boxers’ Brain. Neuroscience, 343, 260–268. Https://Doi.Org/10.1016/J.Neuroscience.2016.12.006
  7. Brevers, D., Dubuisson, E., Dejonghe, F., Dutrieux, J., Petieau, M., Cheron, G., Verbanck, P., & Foucart, J. (2018). Proactive And Reactive Motor Inhibition In Top Athletes Versus Nonathletes. Perceptual And Motor Skills, 125(2), 289–312. Https://Doi.Org/10.1177/0031512517751751
  8. Chen, Y.-H., & Hsu, J.-T. (2026). Why Is There A Left-Hander’s Advantage In Elite Women’s Épée? Insights From Match Performance Analysis Of The 2017–2019 World Championships. Perceptual And Motor Skills. Https://Doi.Org/10.1177/00315125261460994
  9. Cree, J. A., Newman, H. J. H., Norris, L. A., Oates, L. W., & Turner, A. N. (2026). Ecological Perspectives On Épée Fencing Footwork: A Delphi Study Of Coaching And Progression. Perceptual And Motor Skills. Https://Doi.Org/10.1177/00315125261418346
  10. De Giorgio, A., Iuliano, E., Turner, A., Millevolte, C., Cular, D., Ardigò, L. P., & Padulo, J. (2021). Validity And Reliability Of A Light-Based Electronic Target For Testing Response Time In Fencers. Journal Of Strength And Conditioning Research, 35(9), 2636–2644. Https://Doi.Org/10.1519/Jsc.0000000000003181
  11. De Quel, Ó. M., & Bennett, S. J. (2019). Perceptual-Cognitive Expertise In Combat Sports: A Narrative Review And A Model Of Perception-Action. Ricyde: Revista Internacional De Ciencias Del Deporte, 15(58), 323–338. Https://Doi.Org/10.5232/Ricyde2019.05802
  12. Del Percio, C., Marzano, N., Tilgher, S., Fiore, A., Di Ciolo, E., Aschieri, P., Lino, A., Toràn, G., Babiloni, C., & Eusebi, F. (2007). Pre-Stimulus Alpha Rhythms Are Correlated With Post-Stimulus Sensorimotor Performance In Athletes And Non-Athletes: A High-Resolution Eeg Study. Clinical Neurophysiology, 118(8), 1711–1720. Https://Doi.Org/10.1016/J.Clinph.2007.04.029
  13. Del Percio, C., Rossini, P. M., Marzano, N., Iacoboni, M., Infarinato, F., Aschieri, P., Lino, A., Fiore, A., Toran, G., Babiloni, C., & Eusebi, F. (2008). Is There A "Neural Efficiency" In Athletes? A High-Resolution Eeg Study. Neuroimage, 42(4), 1544–1553. Https://Doi.Org/10.1016/J.Neuroimage.2008.05.061
  14. Del Percio, C., Babiloni, C., Marzano, N., Iacoboni, M., Infarinato, F., Vecchio, F., Lizio, R., Aschieri, P., Fiore, A., Toràn, G., Gallamini, M., Baratto, M., & Eusebi, F. (2009). "Neural Efficiency" Of Athletes' Brain For Upright Standing: A High-Resolution Eeg Study. Brain Research Bulletin, 79(3-4), 193–200. Https://Doi.Org/10.1016/J.Brainresbull.2009.02.001
  15. Di Russo, F., Taddei, F., Apnile, T., & Spinelli, D. (2006). Neural Correlates Of Fast Stimulus Discrimination And Response Selection In Top-Level Fencers. Neuroscience Letters, 408(2), 113–118. Https://Doi.Org/10.1016/J.Neulet.2006.08.085
  16. Ding, H., Zhang, L., Ma, C., Wen, H., & Zhao, X. (2025). Effects Of Long-Term Mindfulness Meditation Training On Attentional Capacity In Professional Male Fencer Athletes. Scientific Reports, 15(1), Article 13040. Https://Doi.Org/10.1038/S41598-025-97179-W
  17. Hagemann, N., Schorer, J., Cañal-Bruland, R., Lotz, S., & Strauss, B. (2010). Visual Perception In Fencing: Do The Eye Movements Of Fencers Represent Their Information Pickup?. Attention, Perception, And Psychophysics, 72(8), 2204–2214. Https://Doi.Org/10.3758/Bf03196695
  18. Harris, L. J. (2010). In Fencing, What Gives Left-Handers The Edge? Views From The Present And The Distant Past. Laterality, 15(1-2), 15–55. Https://Doi.Org/10.1080/13576500701650430
  19. Harris, L. J. (2016). In Fencing, Are Left-Handers Trouble For Right-Handers? What Fencing Masters Said In The Past And What Scientists Say Today. Laterality In Sports: Theories And Applications, 31–64. Https://Doi.Org/10.1016/B978-0-12-801426-4.00003-1
  20. Herpin, G., Gauchard, G. C., Lion, A., Collet, P., Keller, D., & Perrin, P. P. (2010). Sensorimotor Specificities In Balance Control Of Expert Fencers And Pistol Shooters. Journal Of Electromyography And Kinesiology, 20(1), 162–169. Https://Doi.Org/10.1016/J.Jelekin.2009.01.003
  21. Holmes, K., & Bottoms, L. (2026). Experimental And Quantitative Observational Research In Fencing And Wheelchair Fencing: A Scoping Review. Plos One, 21(6 May), Article E0350383. Https://Doi.Org/10.1371/Journal.Pone.0350383
  22. Johne, M. (2023). The Influence Of Three-Year Symmetrical Training On The Precision And Frequency Of The Fencers’ Movement. Central European Journal Of Sport Sciences And Medicine, 41(1), 5–12. Https://Doi.Org/10.18276/Cej.2023.1-01
  23. Liberati, A., Altman, D. G., Tetzlaff, J., Mulrow, C., Gøtzsche, P. C., Ioannidis, J. P. A., Clarke, M., Devereaux, P. J., Kleijnen, J., & Moher, D. (2009). The Prisma Statement For Reporting Systematic Reviews And Meta-Analyses Of Studies That Evaluate Health Care Interventions: Explanation And Elaboration. Plos Medicine, 6(7), Article E1000100. Https://Doi.Org/10.1371/Journal.Pmed.1000100
  24. Milic, M., Nedeljkovic, A., Cuk, I., Mudric, M., & García-Ramos, A. (2020). Comparison Of Reaction Time Between Beginners And Experienced Fencers During Quasi-Realistic Fencing Situations. European Journal Of Sport Science, 20(7), 896–905. Https://Doi.Org/10.1080/17461391.2019.1671498
  25. Moher, D., Liberati, A., Tetzlaff, J., & Altman, D. G. (2009). Preferred Reporting Items For Systematic Reviews And Meta-Analyses: The Prisma Statement. Plos Medicine, 6(7), Article E1000097. Https://Doi.Org/10.1371/Journal.Pmed.1000097
  26. Page, M. J., Mckenzie, J. E., Bossuyt, P. M., Boutron, I., Hoffmann, T. C., Mulrow, C. D., Shamseer, L., Tetzlaff, J. M., Akl, E. A., Brennan, S. E., Chou, R., Glanville, J., Grimshaw, J. M., Hróbjartsson, A., Lalu, M. M., Li, T., Loder, E. W., Mayo-Wilson, E., Mcdonald, S., … Moher, D. (2021). The Prisma 2020 Statement: An Updated Guideline For Reporting Systematic Reviews. Bmj, 372, Article N71. Https://Doi.Org/10.1136/Bmj.N71
  27. Rhodes, J., & Honeybone, J. (2013). Lessons Learnt From London 2012 And Their Application In Rio 2016: Perspectives From Athlete And Performance Consultant In Fencing. Reflective Practice, 14(5), 609–621. Https://Doi.Org/10.1080/14623943.2013.835722
  28. Simon, T., Loffing, F., & Frasnelli, E. (2025). Prevalence Of Left-Handers And Their Role In Antagonistic Sports: Beyond Mere Counts Towards A More In-Depth Distributional Analysis Of Ranking Data. Royal Society Open Science, 12(9), Article 250303. Https://Doi.Org/10.1098/Rsos.250303
  29. Taddei, F., Bultrini, A., Spinelli, D., & Di Russo, F. (2012). Neural Correlates Of Attentional And Executive Processing In Middle-Age Fencers. Medicine And Science In Sports And Exercise, 44(6), 1057–1066. Https://Doi.Org/10.1249/Mss.0b013e31824529c2
  30. Teteris, L. E., Saulite, S., Licis, R., Greve, M., & Boobani, B. (2025). Application Of The Vienna Test System To Measure Training-Induced Changes In Choice Reaction Time In U20 Fencers: A 12-Week Training Program Pilot Study. Sports, 13(11), Article 400. Https://Doi.Org/10.3390/Sports13110400
  31. Thomas, J., & Harden, A. (2008). Methods For The Thematic Synthesis Of Qualitative Research In Systematic Reviews. Bmc Medical Research Methodology, 8, Article 45. Https://Doi.Org/10.1186/1471-2288-8-45
  32. Tosti, B., Corrado, S., Mancone, S., Di Libero, T., Carissimo, C., Cerro, G., Rodio, A., Da Silva, V. F., Coimbra, D. R., Andrade, A., & Diotaiuti, P. (2024). Neurofeedback Training Protocols In Sports: A Systematic Review Of Recent Advances In Performance, Anxiety, And Emotional Regulation. Brain Sciences, 14(10), Article 1036. Https://Doi.Org/10.3390/Brainsci14101036
  33. Tran, U. S., & Voracek, M. (2016). Footedness Is Associated With Self-Reported Sporting Performance And Motor Abilities In The General Population. Frontiers In Psychology, 7(Aug), Article 01199. Https://Doi.Org/10.3389/Fpsyg.2016.01199
  34. Tranfield, D., Denyer, D., & Smart, P. (2003). Towards A Methodology For Developing Evidence-Informed Management Knowledge By Means Of Systematic Review. British Journal Of Management, 14(3), 207–222. Https://Doi.Org/10.1111/1467-8551.00375
  35. Tsolakis, C., Douvis, A., Tsigganos, G., Zacharogiannis, E., & Smirniotou, A. (2010). Acute Effects Of Stretching On Flexibility, Power And Sport Specific Performance In Fencers. Journal Of Human Kinetics, 26, 105–114. Https://Doi.Org/10.2478/V10078-010-0054-X
  36. Varesco, G., Sarcher, A., Doron, J., & Jubeau, M. (2024). Striking A Balance: Exploring Attention, Attack Accuracy And Speed In Fencing Performance. European Journal Of Sport Science, 24(9), 1278–1286. Https://Doi.Org/10.1002/Ejsc.12176
  37. Varesco, G., Staiano, W., Bracco, M., Pageaux, B., Soulas, L., Goisbault, M., Doron, J., & Jubeau, M. (2025). Effects Of 5-Week Brain Endurance Training On Fatigue And Performance In Elite Youth Epée Fencers. International Journal Of Sports Physiology And Performance, 20(7), 979–985. Https://Doi.Org/10.1123/Ijspp.2024-0396
  38. Williams, L. R. T., & Walmsley, A. (2000). Response Amendment In Fencing: Differences Between Elite And Novice Subjects. Perceptual And Motor Skills, 91(1), 131–142. Https://Doi.Org/10.2466/Pms.2000.91.1.131
  39. Witkowski, M., Bronikowski, M., Nowik, A., Tomczak, M., Strugarek, J., & Króliczak, G. (2018). Evaluation Of The Effectiveness Of A Transfer (Interhemispheric) Training Program In The Early Stages Of Fencing Training. Journal Of Sports Medicine And Physical Fitness, 58(9), 1368–1374. Https://Doi.Org/10.23736/S0022-4707.17.07556-9
  40. Witkowski, M., Tomczak, E., Łuczak, M., Bronikowski, M., & Tomczak, M. (2020c). Fighting Left Handers Promotes Different Visual Perceptual Strategies Than Right Handers: The Study Of Eye Movements Of Foil Fencers In Attack And Defence. Biomed Research International, 2020, Article 4636271. Https://Doi.Org/10.1155/2020/4636271
  41. Witkowski, M., Bojkowski, Ł., Karpowicz, K., Konieczny, M., Bronikowski, M., & Tomczak, M. (2020a). Effectiveness And Durability Of Transfer Training In Fencing. International Journal Of Environmental Research And Public Health, 17(3), Article 849. Https://Doi.Org/10.3390/Ijerph17030849
  42. Witkowski, M., Tomczak, M., Karpowicz, K., Solnik, S., & Przybyla, A. (2020b). Effects Of Fencing Training On Motor Performance And Asymmetry Vary With Handedness. Journal Of Motor Behavior, 52(1), 50–57. Https://Doi.Org/10.1080/00222895.2019.1579167
  43. Wong, S. C. Y., Chang, J. R., Chan, L. L. Y., Lee, M. S. H., Grivas, T. B., Samartzis, D., Fu, S.-N., Fong, H. H. K., & Wong, A. Y. L. (2025). The Prevalence And Incidence Of Fencing Injuries And Associated Risk Factors: A Systematic Review And Meta-Analysis. Clinical Journal Of Sport Medicine, 35(6), E105–E133. Https://Doi.Org/10.1097/Jsm.0000000000001386
  44. Yarayan, Y. E., Keskin, K., Çelik, O. B., Güder, B. C., Kurtipek, S., Aslan, M., Söğüt, T., Durhan, T. A., Alkhamees, N. H., Sheeha, B. B., Alghannam, A. F., Al-Mhanna, S. B., Grivas, G. V., & Batrakoulis, A. (2025). Impact Of Life Kinetik Training On Balance, Agility, Jumping, Proprioception, And Cognitive Function In Preadolescent Recreational Fencing Athletes: A Randomized Controlled Trial. Bmc Sports Science, Medicine And Rehabilitation, 17(1), Article 146. Https://Doi.Org/10.1186/S13102-025-01186-3
  45. Yiou, E., & Do, M. C. (2001). In A Complex Sequential Movement, What Component Of The Motor Program Is Improved With Intensive Practice, Sequence Timing Or Ensemble Motor Learning?. Experimental Brain Research, 137(2), 197–204. Https://Doi.Org/10.1007/S002210000624
  46. Zhao, K., Hohmann, A., Chang, Y., Zhang, B., Pion, J., & Gao, B. (2019). Physiological, Anthropometric, And Motor Characteristics Of Elite Chinese Youth Athletes From Six Different Sports. Frontiers In Physiology, 10(Apr), Article 405. Https://Doi.Org/10.3389/Fphys.2019.00405