Not all choices are created equal: Task-relevant choices enhance motor learning compared to task-irrelevant choices

Michael J. Carter1, Diane M. Ste-Marie1
1School of Human Kinetics, University of Ottawa, Ottawa, Ontario, Canada

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Aiken, C. A., Fairbrother, J. T., & Post, P. G. (2012). The effects of self-controlled video feedback on the learning of the basketball set shot. Frontiers in Psychology, 3, 338. doi: 10.3389/fpsyg.2012.00338

Andrieux, M., Boutin, A., & Thon, B. (2015). Self-control of task difficulty during early practice promotes motor skill learning. Journal of Motor Behavior, 48, 57–65. doi: 10.1080/00222895.2015.1037879

Barros, J. A. C., Tran, A. Q., Aisner, T., & Salvadora, L. T. (2015). Effects of self-controlled feedback on the acquisition of a balance task. Journal of Sport and Exercise Psychology, 31(Suppl), S28.

Bransford, J. D., Franks, J. J., Morris, C. D., & Stein, B. S. (1979). Some general constraints on learning and memory research. In L. S. Cermak & F. I. M. Craik (Eds.), Levels of processing in human memory (pp. 331–354). Hillsdale: Erlbaum.

Bruechert, L., Lai, Q., & Shea, C. H. (2003). Reduced knowledge of results frequency enhances error detection. Research Quarterly for Exercise and Sport, 74, 467–472.

Carter, M. J., Carlsen, A. N., & Ste-Marie, D. M. (2014). Self-controlled feedback is effective if it is based on the learner’s performance: A replication and extension of Chiviacowsky and Wulf (2005). Frontiers in Psychology, 5, 1325. doi: 10.3389/fpsyg.2014.01325

Carter, M. J., & Patterson, J. T. (2012). Self-controlled knowledge of results: Age-related differences in motor learning, strategies, and error detection. Human Movement Science, 31, 1459–1472. doi: 10.1016/j.humov.2012.07.008

Carter, M. J., Rathwell, S., & Ste-Marie, D. M. (2016). Motor skill retention is modulated by strategy choice during self-controlled knowledge of results schedules. Journal of Motor Learning and Development, 4, 100–115. doi: 10.1123/jmld.2015-0023

Carter, M. J., & Ste-Marie, D. M. (2016). An interpolated activity during the knowledge-of-results delay interval eliminates the learning advantages of self-controlled feedback schedules. Psychological Research. Advance online publication. doi: 10.1007/s00426-016-0757-2

Chiviacowsky, S. (2014). Self-controlled practice: Autonomy protects perceptions of competence and enhances motor learning. Psychology of Sport and Exercise, 15, 505–510. doi: 10.1016/j.psychsport.2014.05.003

Chiviacowsky, S., & Wulf, G. (2002). Self-controlled feedback: Does it enhance learning because performers get feedback when they need it? Research Quarterly for Exercise and Sport, 73, 408–415.

Chiviacowsky, S., & Wulf, G. (2005). Self-controlled feedback is effective if it is based on the learner’s performance. Research Quarterly for Exercise and Sport, 76, 42–48.

Chiviacowsky, S., Wulf, G., Lewthwaite, R., & Campos, T. (2012). Motor learning benefits of self-controlled practice in persons with Parkinson’s disease. Gait and Posture, 35, 601–605. doi: 10.1016/j.gaitpost.2011.12.003

Chiviacowsky, S., Wulf, G., Machado, C., & Rydberg, N. (2012). Self-controlled feedback enhances learning in adults with Down syndrome. Revista Brasileira de Fisioterapia, 16, 191–196.

Chiviacowsky, S., Wulf, G., & Lewthwaite, R. (2012). Self-controlled learning: The importance of protecting perceptions of competence. Frontiers in Psychology, 3, 458. doi: 10.3389/Fpsyg.2012.00458

Fairbrother, J. T., Laughlin, D. D., & Nguyen, T. V. (2012). Self-controlled feedback facilitates motor learning in both high and low activity individuals. Frontiers in Psychology, 3, 323. doi: 10.3389/fpsyg.2012.00323

Goh, H. T., Sullivan, K. J., Gordon, J., Wulf, G., & Winstein, C. J. (2012). Dual-task practice enhances motor learning: A preliminary investigation. Experimental Brain Research, 222, 201–210. doi: 10.1007/s00221-012-3206-5

Grand, K. F., Bruzi, A. T., Dyke, F. B., Godwin, M. M., Leiker, A. M., Thompson, A. G., … Miller, M. W. (2015). Why self-controlled feedback enhances motor learning: Answers from electroencephalography and indices of motivation. Human Movement Science, 43, 23–32. doi: 10.1016/j.humov.2015.06.013

Gray, C., & Kinnear, P. (2012). IBM SPSS Statistics 19 made simple. New York: Psychology Press.

Hansen, S., Pfeiffer, J., & Patterson, J. T. (2011). Self-control of feedback during motor learning: Accounting for the absolute amount of feedback using a yoked group with self-control over feedback. Journal of Motor Behavior, 43, 113–119. doi: 10.1080/00222895.2010.548421

Huang, V. S., Shadmehr, R., & Diedrichsen, J. (2008). Active learning: Learning a motor skill without a coach. Journal of Neurophysiology, 100, 879–887. doi: 10.1152/jn.01095.2007

Kaefer, A., Chiviacowsky, S., Meira, C. D., & Tani, G. (2014). Self-controlled practice enhances motor learning in introverts and extroverts. Research Quarterly for Exercise and Sport, 85, 226–233. doi: 10.1080/02701367.2014.893051

Kantak, S. S., & Winstein, C. J. (2012). Learning-performance distinction and memory processes for motor skills: A focused review and perspective. Behavioural Brain Research, 228, 219–231. doi: 10.1016/j.bbr.2011.11.028

Lee, T. D. (1988). Transfer-appropriate processing: A framework for conceptualizing practice effects in motor learning. In O. G. Meijer & K. Roth (Eds.), Complex movement behaviour: The motor–action controversy (pp. 201–215). Amsterdam: Elsevier Science.

Lewthwaite, R., Chiviacowsky, S., Drews, R., & Wulf, G. (2015). Choose to move: The motivational impact of autonomy support on motor learning. Psychonomic Bulletin & Review, 22, 1383–1388. doi: 10.3758/s13423-015-0814-7

Lewthwaite, R., & Wulf, G. (2010). Grand challenge for movement science and sport psychology: Embracing the social–cognitive–affective–motor nature of motor behavior. Frontiers in Psychology, 1, 42. doi: 10.3389/fpsyg.2010.00042

Lewthwaite, R., & Wulf, G. (2012). Motor learning through a motivational lens. In N. J. Hodges & A. M. Williams (Eds.), Skill acquisition in sport: Research, theory, and practice (2nd ed., pp. 173–191). London: Routledge.

Lohse, K., Buchanan, T., & Miller, M. (2016). Underpowered and overworked: Problems with data analysis in motor learning studies. Journal of Motor Learning and Development, 4, 37–58. doi: 10.1123/jmld.2015-0010

McAuley, E., Duncan, T., & Tammen, V. V. (1989). Psychometric properties of the Intrinsic Motivation Inventory in a competitive sport setting: A confirmatory factor-analysis. Research Quarterly for Exercise and Sport, 60, 48–58.

McKay, B., Carter, M. J., & Ste-Marie, D. M. (2014). Self-controlled learning: A meta-analysis. Journal of Sport and Exercise Psychology, 36(Suppl), S43.

Morris, C. D., Bransford, J. D., & Franks, J. J. (1977). Levels of processing versus transfer appropriate processing. Journal of Verbal Learning and Verbal Behavior, 16, 519–533. doi: 10.1016/S0022-5371(77)80016-9

Oldfield, R. C. (1971). The Assessment and analysis of handedness: The Edinburgh Inventory. Neuropsychologia, 9, 97–113. doi: 10.1016/0028-393290067-4

Open Science Collaboration. (2015). Estimating the reproducibility of psychological science. Science, 349, aac4716–aac4716. doi: 10.1126/science.aac4716

Patterson, J. T., Carter, M., & Sanli, E. (2011). Decreasing the proportion of self-control trials during the acquisition period does not compromise the learning advantages in a self-controlled context. Research Quarterly for Exercise and Sport, 82, 624–633.

Robertson, E. M. (2009). From creation to consolidation: A novel framework for memory processing. PLoS Biology, 7, e19. doi: 10.1371/journal.pbio.1000019

Robertson, E. M., Pascual-Leone, A., & Miall, R. C. (2004). Current concepts in procedural consolidation. Nature Reviews Neuroscience, 5, 576–582. doi: 10.1038/nrn1426

Sanli, E. A., Patterson, J. T., Bray, S. R., & Lee, T. D. (2013). Understanding self-controlled motor learning protocols through the Self-Determination Theory. Frontiers in Psychology, 3, 611. doi: 10.3389/fpsyg.2012.00611

Schmidt, R. A., & Lee, T. D. (2011). Motor control and learning: A behavioral emphasis (5th ed.). Champaign: Human Kinetics.

Simons, D. J. (2014). The value of direct replication. Perspectives on Psychological Science, 9, 76–80. doi: 10.1177/1745691613514755

Ste-Marie, D. M., Carter, M. J., Law, B., Vertes, K., & Smith, V. (2016). Self-controlled learning benefits: Exploring the contributions of self-efficacy and intrinsic motivation via path analysis. Journal of Sport Sciences, 34, 1650–1656. doi: 10.1080/02640414.2015.1130236

Ste-Marie, D. M., Vertes, K. A., Law, B., & Rymal, A. M. (2013). Learner-controlled self-observation is advantageous for motor skill acquisition. Frontiers in Psychology, 3, 556. doi: 10.3389/fpsyg.2012.00556

Swinnen, S. P. (1988). Post-performance activities and skill learning. In O. G. Meijer & K. Roth (Eds.), Complex motor behaviour: The motor–action controversy (pp. 315–338). Amterdam: Elsevier Science.

Wulf, G., & Lewthwaite, R. (2016). Optimizing performance through intrinsic motivation and attention for learning: The OPTIMAL theory of motor learning. Psychonomic Bulletin & Review, 23, 1382–1414. doi: 10.3758/s13423-015-0999-9