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  1. What muscle variable(s) does the nervous system control in limb movements?R. B. Stein - 1982 - Behavioral and Brain Sciences 5 (4):535-541.
    To controlforceaccurately under a wide range of behavioral conditions, the central nervous system would either require a detailed, continuously updated representation of the state of each muscle (and the load against which each is acting) or else force feedback with sufficient gain to cope with variations in the properties of the muscles and loads. The evidence for force feedback with adequate gain or for an appropriate central representation is not sufficient to conclude that force is the major controlled variable in (...)
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  • Strategies for the control of voluntary movements with one mechanical degree of freedom.Gerald L. Gottlieb, Daniel M. Corcos & Gyan C. Agarwal - 1989 - Behavioral and Brain Sciences 12 (2):189-210.
    A theory is presented to explain how accurate, single-joint movements are controlled. The theory applies to movements across different distances, with different inertial loads, toward targets of different widths over a wide range of experimentally manipulated velocities. The theory is based on three propositions. (1) Movements are planned according to “strategies” of which there are at least two: a speed-insensitive (SI) and a speed-sensitive (SS) one. (2) These strategies can be equated with sets of rules for performing diverse movement tasks. (...)
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  • Schemas: Not yet an interlingua for the brain sciences.John K. Tsotsos - 1987 - Behavioral and Brain Sciences 10 (3):447-448.
  • Motor-output variability: A theory for the accuracy of rapid motor acts.Richard A. Schmidt - 1979 - Psychological Review 86 (5):415-451.
  • Models for the speed and accuracy of aimed movements.David E. Meyer, J. E. Smith & Charles E. Wright - 1982 - Psychological Review 89 (5):449-482.
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  • What is the schema for a schema?Alan K. Mackworth - 1987 - Behavioral and Brain Sciences 10 (3):443-444.
  • Braking may be more critical than acceleration.William A. MacKay - 1989 - Behavioral and Brain Sciences 12 (2):227-228.
  • Direct pattern-imposing control or dynamic regulation?Marl L. Latash - 1989 - Behavioral and Brain Sciences 12 (2):226-227.
  • Motor control: Which themes do we orchestrate?J. A. S. Kelso & E. L. Saltzman - 1982 - Behavioral and Brain Sciences 5 (4):554-557.
  • Systems analysis in the study of the motor-control system: Control theory alone is insufficient.R. E. Kearney & I. W. Hunter - 1982 - Behavioral and Brain Sciences 5 (4):553-554.
  • Levels of modeling of mechanisms of visually guided behavior.Michael A. Arbib - 1987 - Behavioral and Brain Sciences 10 (3):407-436.
    Intermediate constructs are required as bridges between complex behaviors and realistic models of neural circuitry. For cognitive scientists in general, schemas are the appropriate functional units; brain theorists can work with neural layers as units intermediate between structures subserving schemas and small neural circuits.After an account of different levels of analysis, we describe visuomotor coordination in terms of perceptual schemas and motor schemas. The interest of schemas to cognitive science in general is illustrated with the example of perceptual schemas in (...)
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  • Computation and Cognition: Toward a Foundation for Cognitive Science.Zenon W. Pylyshyn - 1984 - Cambridge: MIT Press.
    This systematic investigation of computation and mental phenomena by a noted psychologist and computer scientist argues that cognition is a form of computation, that the semantic contents of mental states are encoded in the same general way as computer representations are encoded. It is a rich and sustained investigation of the assumptions underlying the directions cognitive science research is taking. 1 The Explanatory Vocabulary of Cognition 2 The Explanatory Role of Representations 3 The Relevance of Computation 4 The Psychological Reality (...)
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