Training methods and motor educability predict lay-up performance in basketball competitive players

Authors

DOI:

https://doi.org/10.47197/retos.v80.118723

Keywords:

basketball training, lay-up shooting, motor educability, practice density, skill acquisition

Abstract

Introduction: Lay-up shooting is a fundamental offensive skill that significantly influences scoring effectiveness in basketball; however, empirical evidence on its multifactorial determinants in Southeast Asian competitive contexts remains limited.

Objective: This study aimed to examine the effects of training method (part vs. whole), motor educability, and practice density on lay-up shooting performance, as well as to compare the relative contribution of each predictor among competitive players.

Methodology: A 2 × 2 factorial experimental design was employed involving 80 competitive basketball players (60 males, 20 females; M age = 18.5 ± 2.3 years) recruited from clubs and university teams. Motor educability was measured using the Iowa Brace Motor Educability Test, practice density was monitored through systematic time-sampling, and lay-up performance was assessed using an AAHPERD-adapted shooting test. Data were analyzed using hierarchical multiple regression and two-way ANOVA.

Results: The results indicated that motor educability accounted for 42.5% of the variance in lay-up performance (R² = 0.425; p < 0.001). The inclusion of practice density increased the explained variance by 17.8% (ΔR² = 0.178; p < 0.001), while training method contributed an additional 7.5% (ΔR² = 0.075; p = 0.003), resulting in a total R² of 0.678. A significant interaction effect between training method and motor educability was observed (F(1,76) = 8.34, p = 0.005, η² = 0.099), indicating that whole figure training is more effective for athletes with higher motor educability.

Conclusions: These findings highlight the importance of individualized training approaches, emphasizing motor educability assessment and optimal practice density to enhance lay-up performance.

References

Abady, A. N., Butar, P. W. M. B. B. P. W. M. B., Longakit, J., & Gordichev, V. G. V. (2025). Technological Innovations and Pedagogical Advancements in Basketball Skill Learning: A Systematic Review of High School Physical Education. INSPIREE Indonesian Sport Innovation Review, 6(2), 117. https://doi.org/10.53905/inspiree.v6i02.149

Abeles, D., Herszage, J., Shahar, M., & Censor, N. (2023). Initial motor skill performance predicts future performance, but not learning. Scientific Reports, 13(1), 11359. https://doi.org/10.1038/s41598-023-38231-5

Afonso, J., Nakamura, F. Y., Canário-Lemos, R., Peixoto, R., Fernandes, C., Mota, T., Ferreira, M., Silva, R., Teixeira, A., & Clemente, F. M. (2021). A Novel Approach to Training Monotony and Acute-Chronic Workload Index: A Comparative Study in Soccer. Frontiers in Sports and Active Living, 3, 661200. https://doi.org/10.3389/fspor.2021.661200

Amaro, C. M., Gomes, B. B., Mendes, R., & Castro, M. A. (2022). Journal of Physical Education and Sport, 22(5). https://doi.org/10.7752/jpes.2022.05159

Anderson, D. I., Lohse, K. R., Lopes, T. C. V., & Williams, A. M. (2021). Individual differences in motor skill learning: Past, present and future. Human Movement Science, 78, 102818. https://doi.org/10.1016/j.humov.2021.102818

Begu, B., Miftari, F., Dalıp, M., & Haxhnikaj, L. (2023). Comparing Situational and Motor Abilities Among Kosovo Junior Basketball Players in Super and Unique Leagues. Physical Education Theory and Methodology, 23(4), 552. https://doi.org/10.17309/tmfv.2023.4.09

Bompa, T. O., & Buzzichelli, C. A. (2019). Periodization. In Human Kinetics eBooks. Human Kinetics. https://doi.org/10.5040/9781718225435

Boonsom, N., & Bungmark, W. (2024). Effects of balance shooting training program on jump shot per-formance and dynamic balance in male basketball university players. Journal of Physical Edu-cation and Sport, 24(1). https://doi.org/10.7752/jpes.2024.01023

Burkaitė, G., Figueira, B., Schöllhorn, W. I., Coutinho, D., & Paulauskas, R. (2025). Differential shooting training in youth basketball players: an analysis of performance effects. Frontiers in Psychology, 16, 1709103. https://doi.org/10.3389/fpsyg.2025.1709103

Christiansen, L., Larsen, M. N., Madsen, M. A. J., Grey, M. J., Nielsen, J. B., & Lundbye‐Jensen, J. (2020). Long-term motor skill training with individually adjusted progressive difficulty enhances learn-ing and promotes corticospinal plasticity. Scientific Reports, 10(1), 15588. https://doi.org/10.1038/s41598-020-72139-8

Davids, K., Fabian, & Rothwell, M. (2021). Adopting an ecological perspective on skill performance and learning in sport. European Journal of Human Movement, 46. https://doi.org/10.21134/eurjhm.2021.46.667

Dehghansai, N., Lemez, S., Wattie, N., Pinder, R. A., & Baker, J. (2020). Understanding the Development of Elite Parasport Athletes Using a Constraint-Led Approach: Considerations for Coaches and Practitioners [Review of Understanding the Development of Elite Parasport Athletes Using a Constraint-Led Approach: Considerations for Coaches and Practitioners]. Frontiers in Psychology, 11. Frontiers Media. https://doi.org/10.3389/fpsyg.2020.502981

Dewi, N., Sudijandoko, A., Nurhasan, N., Kartiko, D. C., & Pranoto, A. (2026). A systematic review and bibliometric analysis of motor performance factors influencing basketball shooting skills. Retos, 77, 628. https://doi.org/10.47197/retos.v77.118311

Ericsson, K. A., & Lehmann, A. (1996). EXPERT AND EXCEPTIONAL PERFORMANCE: Evidence of Max-imal Adaptation to Task Constraints. Annual Review of Psychology, 47(1), 273. https://doi.org/10.1146/annurev.psych.47.1.273

Faul, F., Erdfelder, E., Buchner, A., & Lang, A.-G. (2009). Statistical power analyses using G*Power 3.1: Tests for correlation and regression analyses. Behavior Research Methods, 41(4), 1149. https://doi.org/10.3758/brm.41.4.1149

Fontana, F., Furtado, O., Mazzardo, O., & Gallagher, J. D. (2009). Whole and Part Practice: A Meta-Analysis. Perceptual and Motor Skills, 109(2), 517. https://doi.org/10.2466/pms.109.2.517-530

Gabbett, T. J., Nassis, G. P., Oetter, E., Pretorius, J., Johnston, N., Medina, D., Rodas, G., Myslinski, T., How-ells, D., Beard, A., & Ryan, A. (2017). The athlete monitoring cycle: a practical guide to interpret-ing and applying training monitoring data. British Journal of Sports Medicine, 51(20), 1451. https://doi.org/10.1136/bjsports-2016-097298

Gaggioli, A., Morganti, L., Mondoni, M., & Antonietti, A. (2013). Benefits of Combined Mental and Physi-cal Training in Learning a Complex Motor Skill in Basketball. Psychology, 4(9), 1. https://doi.org/10.4236/psych.2013.49a2001

Guimarães, E., Baxter‐Jones, A., Williams, A., Tavares, F. H., Janeira, M. A., & Maia, J. (2021). Modelling the dynamics of change in the technical skills of young basketball players: The INEX study. PLoS ONE, 16(9). https://doi.org/10.1371/journal.pone.0257767

Hands, B., McIntyre, F., & Parker, H. (2018). The General Motor Ability Hypothesis: An Old Idea Revisit-ed. Perceptual and Motor Skills, 125(2), 213. https://doi.org/10.1177/0031512517751750

Hansen, S., Tremblay, L., & Elliott, D. (2005). Part and Whole Practice: Chunking and Online Control in the Acquisition of a Serial Motor Task. Research Quarterly for Exercise and Sport, 76(1), 60. https://doi.org/10.5641/027013605x13076330976786

Healy, A. F., Kole, J. A., & Bourne, L. E. (2014). Training principles to advance expertise. Frontiers in Psy-chology, 5, 131. https://doi.org/10.3389/fpsyg.2014.00131

Hillman, K. M. (2019). Part-Task Training versus Whole-Task Training for Simple versus Complex Tasks. UTC Scholar (University of Tennessee at Chattanooga). https://scholar.utc.edu/rcio/2019/sessions/40

Huston, R. L., & Grau, C. A. (2003). Basketball shooting strategies — the free throw, direct shot and layup. Sports Engineering, 6(1), 49. https://doi.org/10.1007/bf02844160

Kimoto, Y., Hirano, M., & Furuya, S. (2024). Decomposition of a complex motor skill in learning im-proves experts’ expertise. Research Square (Research Square). https://doi.org/10.21203/rs.3.rs-4148558/v1

Larkin, P., Barkell, J., & O’Connor, D. (2022). The Practice Environment—How Coaches May Promote Athlete Learning [Review of The Practice Environment—How Coaches May Promote Athlete Learning]. Frontiers in Sports and Active Living, 4. Frontiers Media. https://doi.org/10.3389/fspor.2022.957086

Li, Q., Quan, F., Li, L., & Wang, J. (2026). Cognitive-coordination training: impact on sport-specific phys-ical fitness and technical skill of adolescent basketball athletes. Frontiers in Psychology, 16, 1669608. https://doi.org/10.3389/fpsyg.2025.1669608

Liu, C. (2023). A Constraint-Led Approach: Enhancing Skill Acquisition and Performance in Sport and Physical Education Pedagogy. Studies in Sports Science and Physical Education, 1(1), 1. https://doi.org/10.56397/ssspe.2023.06.01

Maarseveen, M. J. J. van, & Oudejans, R. R. D. (2018). Motor and Gaze Behaviors of Youth Basketball Players Taking Contested and Uncontested Jump Shots. Frontiers in Psychology, 9. https://doi.org/10.3389/fpsyg.2018.00706

Maudrich, T., Kenville, R., Schempp, C., Noack, E., & Ragert, P. (2021). Comparison of whole-body sen-sorimotor skill learning between strength athletes, endurance athletes and healthy sedentary adults. Heliyon, 7(8). https://doi.org/10.1016/j.heliyon.2021.e07723

Mizuguchi, N., Tsuchimoto, S., Fujii, H., Kato, K., Nagami, T., & Kanosue, K. (2021). Recognition capability of one’s own skilled movement is dissociated from acquisition of motor skill memory. Scien-tific Reports, 11(1). https://doi.org/10.1038/s41598-021-96381-w

Moradi, J., Maleki, M., & Moradi, H. (2023). The Effect of Part and Whole Practice on Learning Lay-Up Shot Skill in Young and Adolescent Male Students. Journal of Motor Learning and Development, 11(1), 143. https://doi.org/10.1123/jmld.2022-0033

Okazaki, V. H. A., Rodacki, A. L. F., & Satern, M. N. (2015). A review on the basketball jump shot. Sports Biomechanics, 14(2), 190. https://doi.org/10.1080/14763141.2015.1052541

Park, J.-H., Wilde, H., & Shea, C. H. (2004). Part-Whole Practice of Movement Sequences. Journal of Mo-tor Behavior, 36(1), 51. https://doi.org/10.3200/jmbr.36.1.51-61

Pugliese, E., Forte, & D’Anna, C. (2023). Journal of Physical Education and Sport, 23(9). https://doi.org/10.7752/jpes.2023.09285

Ranganathan, R., Cone, S., & Fox, B. G. (2022). Predicting individual differences in motor learning: A crit-ical review. Neuroscience & Biobehavioral Reviews, 141, 104852. https://doi.org/10.1016/j.neubiorev.2022.104852

Sandbakk, Ø., Tønnessen, E., Sandbakk, S. B., Losnegard, T., Seiler, S., & Haugen, T. (2025). Best-Practice Training Characteristics Within Olympic Endurance Sports as Described by Norwegian World-Class Coaches. Sports Medicine - Open, 11(1), 45. https://doi.org/10.1186/s40798-025-00848-3

Sattelmayer, M., Elsig, S., Hilfiker, R., & Baer, G. (2016). A systematic review and meta-analysis of se-lected motor learning principles in physiotherapy and medical education. BMC Medical Educa-tion, 16(1), 15. https://doi.org/10.1186/s12909-016-0538-z

Svoboda, I., Bon, I., Rupčić, T., Cigrovski, V., & Đurković, T. (2024). Defining the Quantitative Criteria for Two Basketball Shooting Techniques. Applied Sciences, 14(11), 4460. https://doi.org/10.3390/app14114460

Tani, G., Corrêa, U. C., Basso, L., Benda, R. N., Ugrinowitsch, H., & Choshi, K. (2014). An adaptive process model of motor learning: insights for the teaching of motor skills. PubMed, 18(1), 47. https://pubmed.ncbi.nlm.nih.gov/24314130

Woods, C. T., McKeown, I., O’Sullivan, M., Robertson, S., & Davids, K. (2020). Theory to Practice: Per-formance Preparation Models in Contemporary High-Level Sport Guided by an Ecological Dy-namics Framework. Sports Medicine - Open, 6(1). https://doi.org/10.1186/s40798-020-00268-5

World Medical Association Declaration of Helsinki. (2013). JAMA, 310(20), 2191. https://doi.org/10.1001/jama.2013.281053

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19-05-2026

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Original Research Article

How to Cite

Rizhardi, R., Priyono, B., Nasuka, N., Hadi, H., Pramono, H., & Setyawati, H. (2026). Training methods and motor educability predict lay-up performance in basketball competitive players. Retos, 80, 807-820. https://doi.org/10.47197/retos.v80.118723