1. Magill RA, Anderson DI. Motor learning and control: Concepts and applications. 9 ed. New York: McGraw-Hill 2010.
2. Green TD, Flowers JH. Implicit versus explicit learning processes in a probabilistic, continuous fine-motor catching task. Journal of motor behavior. 1991;23(4):293-300.
3. Adams JA. A closed-loop theory of motor learning. Journal of motor behavior. 1971;3(2):111-50.
4. Schmidt RA. A schema theory of discrete motor skill learning. Psychological review. 1975;82(4):225.
5. Masters R, Maxwell J. The theory of reinvestment. International Review of Sport and Exercise Psychology. 2008;1(2):160-83.
6. Baddeley A, Wilson BA. When implicit learning fails: Amnesia and the problem of error elimination. Neuropsychologia. 1994;32(1):53-68.
7. Baddeley AD, Hitch G. Working memory. Psychology of learning and motivation. 8: Elsevier; 1974. p. 47-89.
8. Poolton J, Masters R, Maxwell J. The influence of analogy learning on decision-making in table tennis: Evidence from behavioural data. Psychology of sport and exercise. 2006;7(6):677-88.
9. Schack T, Mechsner F. Representation of motor skills in human long-term memory. Neuroscience Letters. 2006;391(3):77-81.
10. Frank C, Land WM, Schack T. Perceptual-cognitive changes during motor learning: The influence of mental and physical practice on mental representation, gaze behavior, and performance of a complex action. Frontiers in Psychology. 2015;6:1981.
11. Frank C, Land WM, Schack T. Mental representation and learning: The influence of practice on the development of mental representation structure in complex action. Psychology of Sport and Exercise. 2013;14(3):353-61.
12. Land WM, Frank C, Schack T. The influence of attentional focus on the development of skill representation in a complex action. Psychology of Sport and Exercise. 2014;15(1):30-8.
13. Schack T. The relationship between motor representation and biomechanical parameters in complex movements: towards an integrative perspective of movement science. European Journal of Sport Science. 2003;3(2):1-13.
14. Masters RSW. Knowledge, knerves and know‐how: The role of explicit versus implicit knowledge in the breakdown of a complex motor skill under pressure. British Journal of Psychology. 1992;83(3):343-58.
15. Maxwell J, Masters R, Kerr E, Weedon E. The implicit benefit of learning without errors. The Quarterly Journal of Experimental Psychology Section A. 2001;54(4):1049-68.
16. Maxwell JP, Capio CM, Masters RS. Interaction between motor ability and skill learning in children: application of implicit and explicit approaches. European journal of sport science. 2017;17(4):407-16.
17. Capio CM, Sit CH, Abernethy B, Masters RS. The possible benefits of reduced errors in the motor skills acquisition of children. Sports Medicine, Arthroscopy, Rehabilitation, Therapy & Technology. 2012;4(1):1.
18. Schmidt RA, Wrisberg CA. Motor learning and performance: A situation-based learning approach: Human kinetics; 2008.
19. Schack T. Measuring mental representations. Measurement in sport and exercise psychology. 2012;8:203-14.
20. Schack T. The cognitive architecture of complex movement. International journal of sport and exercise psychology. 2004;2(4):403-38.
21. Chase WG, Simon HA. Perception in chess. Cognitive psychology. 1973;4(1):55-81.
22. Schack T. The Cognitive Architecture of Motion. In: Mornell A, editor. Art in Motion-Musical & Athletic Motor Learning & Performance. Frankfurt/ Main: Peter Lang; 2009. p. 161-87.
23. Allard F, Burnett N. Skill in sport. Canadian Journal of Psychology/Revue canadienne de psychologie. 1985;39(2):294.
24. Chi MT, Rees ET. A learning framework for development. Contributions to human development. 1983;9:71-107.
25. French KE, Thomas JR. The Relation off Knowledge Development to Children's Basketball Performance. Journal of Sport and Exercise Psychology. 1987;9(1):15-32.
26. Groot Ad. Thought and Choice in Chess (ed. GW Baylor) Translated from the Dutch version from 1946. Second. Mouton Publishers, The Hague; 1965.
27. Beilock SL, Wierenga SA, Carr TH. Memory and expertise: What do experienced athletes remember. Expert performance in sports: Advances in research on sport expertise. 2003:295-320.
28. Beilock SL, Wierenga SA, Carr TH. Expertise, attention, and memory in sensorimotor skill execution: Impact of novel task constraints on dual-task performance and episodic memory. The Quarterly Journal of Experimental Psychology Section A. 2002;55(4):1211-40.
29. Beilock SL, Carr TH. On the fragility of skilled performance: What governs choking under pressure? Journal of experimental psychology: General. 2001;130(4):701.
30. Masters RS, Maxwell JP. 10 Implicit motor learning, reinvestment and movement disruption. Skill acquisition in sport: Research, theory and practice. 2004:207.
31. Masters RS. Knowledge, knerves and know‐how: The role of explicit versus implicit knowledge in the breakdown of a complex motor skill under pressure. British journal of psychology. 1992;83(3):343-58.
32. Weigelt M, Ahlmeyer T, Lex H, Schack T. The cognitive representation of a throwing technique in judo experts–technological ways for individual skill diagnostics in high-performance sports. Psychology of Sport and Exercise. 2011;12(3):231-5.
33. Velentzas K, Heinen T, Tenenbaum G, Schack T. Functional mental representation of volleyball routines in German youth female national players. Journal of Applied Sport Psychology. 2010;22(4):474-85.
34. Schack T. Building blocks and architecture of dance. In: Bläsing B, Puttke M, Schack T, editors. The Neurocognition of Dance: Mind, Movement and Motor Skills: Psychology Press; 2010. p. 11.
35. Bläsing B, Tenenbaum G, Schack T. The cognitive structure of movements in classical dance. Psychology of Sport and Exercise. 2009;10(3):350-60.
36. Bläsing B, Schack T, Brugger P. The functional architecture of the human body: assessing body representation by sorting body parts and activities. Experimental Brain Research. 2010;203(1):119-29.
37. Stöckel T, Hughes CM, Schack T. Representation of grasp postures and anticipatory motor planning in children. Psychological research.76-768(6)76;2012.
38. Sanli EA, Lee TD. What roles do errors serve in motor skill learning? An examination of two theoretical predictions. Journal of motor behavior. 2014;46(5):329-37.
39. Poolton J, Masters R, Maxwell J. The relationship between initial errorless learning conditions and subsequent performance. Human movement science. 2005;24(3):362-78.
40. Post PG, Fairbrother JT, Barros JA. Self-controlled amount of practice benefits learning of a motor skill. Research quarterly for exercise and sport. 2011;82(3):474-81.
41. Payne VG, Isaacs LD. Human motor development: A lifespan approach: Routledge; 2017.
42. Chiviacowsky S, Wulf G. Feedback after good trials enhances learning. Research quarterly for exercise and sport. 2007;78(2):40-7.
43. Hemayattalab R. Effects of self-control and instructor-control feedback on motor learning in individuals with cerebral palsy. Research in developmental disabilities. 2014;35(11):2766-72.
44. Feltz DL, Landers DM, Becker BJ. A revised meta-analysis of the mental practice literature on motor skill learning1988.
45. Caliński T, Harabasz J. A dendrite method for cluster analysis. Communications in Statistics-theory and Methods. 1974;3(1):1-27.
46. Santos JM, Embrechts M, editors. On the use of the adjusted rand index as a metric for evaluating supervised classification. International conference on artificial neural networks; 2009: Springer.
47. Sanli EA. The role of minimization and facilitation of learner involvement during acquisition in the learning of a motor task 2013.
48. Schack T. Measuring Mental Representations. In: Tenenbaum G, Eklund RC, Kamata A, editors. Measurement in sport and exercise psychology Human Kinetics; 2012. p. 203-14
49. Schack T. Knowledge and performance in action. Journal of Knowledge Management. 2004;8(4):38-53.
50. Frank C, Schack T. The Representation of Motor (Inter)action, States of Action, and Learning: Three Perspectives on Motor Learning by Way of Imagery and Execution. Front Psychol. 2017;8:678.
51. Frank C, Land WM, Popp C, Schack T. Mental representation and mental practice: experimental investigation on the functional links between motor memory and motor imagery. PLoS One. 2014;9(4):e95175.
52. Land WM, Volchenkov D, Blasing BE, Schack T. From action representation to action execution: exploring the links between cognitive and biomechanical levels of motor control. Frontiers in Computational Neuroscience. 2013;7:127.
53. Hardy L, Mullen R, Jones G. Knowledge and conscious control of motor actions under stress. British Journal of psychology. 1996;87(4):621-36.