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  1. Systematic error in the organization of physical action.C. B. Walter, S. P. Swinnen, N. Dounskaia & H. Langendonk - 2001 - Cognitive Science 25 (3):393-422.
    Current views of the control of complex, purposeful movements acknowledge that organizational processes must reconcile multiple concerns. The central priority is of course accomplishing the actor's goal. But in specifying the manner in which this occurs, the action plan must accommodate such factors as the interaction of mechanical forces associated with the motion of a multilinked system (classical mechanics) and, in many cases, intrinsic bias toward preferred movement patterns, characterized by so-called “coordination dynamics.” The most familiar example of the latter (...)
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  • Systematic error in the organization of physical action.Charles B. Walter, Stephan P. Swinnen, Natalia Dounskaia & H. Van Langendonk - 2001 - Cognitive Science 25 (3):393-422.
    Current views of the control of complex, purposeful movements acknowledge that organizational processes must reconcile multiple concerns. The central priority is of course accomplishing the actor's goal. But in specifying the manner in which this occurs, the action plan must accommodate such factors as the interaction of mechanical forces associated with the motion of a multilinked system (classical mechanics) and, in many cases, intrinsic bias toward preferred movement patterns, characterized by so‐called “coordination dynamics.” The most familiar example of the latter (...)
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  • Distance versus position information in the control of aiming movements.P. C. W. van Wieringen & P. J. Beek - 1997 - Behavioral and Brain Sciences 20 (2):323-324.
    Information about positions, from which differences in position are computed (as proposed in the vector-integration-to-endpoint model), provides a more plausible perceptual basis for the control of goal-directed arm movements than information about distance (as proposed in the kinematic model).
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  • Representational Processes of Actions Toward and Away from the Body.Francesco Ruotolo, Gennaro Ruggiero, Teresa Pia Arabia, Laurent Ott, Yann Coello, Angela Bartolo & Tina Iachini - 2022 - Cognitive Science 46 (9):e13192.
    Cognitive Science, Volume 46, Issue 9, September 2022.
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  • The Ultimate Tool: The Body, Planning of Physical Actions, and the Role of Mental Imagery in Choosing Motor Acts.David A. Rosenbaum - 2021 - Topics in Cognitive Science 13 (4):777-799.
    The ultimate tool, it could be said, is the brain and body. Therefore, a way to understand tool use is to study the brain's control of the body. A more manageable aim is to use the tools of cognitive science to explore the planning of physical actions. Here, I focus on two kinds of physical acts which directly or indirectly involve tool use: producing finger‐press sequences, and walking and reaching for objects. The main question is how people make choices between (...)
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  • Posture-based motion planning: Applications to grasping.David A. Rosenbaum, Ruud J. Meulenbroek, Jonathan Vaughan & Chris Jansen - 2001 - Psychological Review 108 (4):709-734.
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  • Effects of Reliability and Global Context on Explicit and Implicit Measures of Sensed Hand Position in Cursor-Control Tasks.Miya K. Rand & Herbert Heuer - 2015 - Frontiers in Psychology 6.
  • Too Good to be True? Ideomotor Theory from a Computational Perspective.Oliver Herbort & Martin V. Butz - 2012 - Frontiers in Psychology 3.
  • Separate visual representations in the planning and control of action.Scott Glover - 2004 - Behavioral and Brain Sciences 27 (1):3-24.
    Evidence for a dichotomy between the planning of an action and its on-line control in humans is reviewed. This evidence suggests that planning and control each serve a specialized purpose utilizing distinct visual representations. Evidence from behavioral studies suggests that planning is influenced by a large array of visual and cognitive information, whereas control is influenced solely by the spatial characteristics of the target, including such things as its size, shape, orientation, and so forth. Evidence from brain imaging and neuropsychology (...)
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  • Modeling the Maturation of Grip Selection Planning and Action Representation: Insights from Typical and Atypical Motor Development.Ian Fuelscher, Jacqueline Williams, Kate Wilmut, Peter G. Enticott & Christian Hyde - 2016 - Frontiers in Psychology 7.
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  • Dynamic field theory of movement preparation.Wolfram Erlhagen & Gregor Schöner - 2002 - Psychological Review 109 (3):545-572.
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  • Exploiting redundancy for flexible behavior: Unsupervised learning in a modular sensorimotor control architecture.Martin V. Butz, Oliver Herbort & Joachim Hoffmann - 2007 - Psychological Review 114 (4):1015-1046.