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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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  • The representation of egocentric space in the posterior parietal cortex.J. F. Stein - 1992 - Behavioral and Brain Sciences 15 (4):691-700.
  • The Integrative Action of the Nervous System.S. Sherrington - 1907 - Journal of Philosophy, Psychology and Scientific Methods 4 (11):301-304.
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  • Motor-output variability: A theory for the accuracy of rapid motor acts.Richard A. Schmidt - 1979 - Psychological Review 86 (5):415-451.
  • Skilled actions: A task-dynamic approach.Elliot Saltzman & J. A. Kelso - 1987 - Psychological Review 94 (1):84-106.
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  • How was movement controlled before Newton?Lloyd D. Partridge - 1982 - Behavioral and Brain Sciences 5 (4):561-561.
  • Jeannerod's representing brain: Image or illusion?Jean Pailhous & Mireille Bonnard - 1994 - Behavioral and Brain Sciences 17 (2):215-216.
  • Coordinate transformations or dynamic models?Peter D. Neilson - 1992 - Behavioral and Brain Sciences 15 (2):348-348.
  • 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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  • Strategies for the control of studies of voluntary movements with one mechanical degree of freedom.Gerale E. Loeb - 1989 - Behavioral and Brain Sciences 12 (2):227-227.
  • Equilibrium-point hypothesis, minimum effort control strategy and the triphasic muscle activation pattern.Ning Lan & Patrick E. Crago - 1992 - Behavioral and Brain Sciences 15 (4):769-771.
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  • The representing brain: Neural correlates of motor intention and imagery.Marc Jeannerod - 1994 - Behavioral and Brain Sciences 17 (2):187-202.
    This paper concerns how motor actions are neurally represented and coded. Action planning and motor preparation can be studied using a specific type of representational activity, motor imagery. A close functional equivalence between motor imagery and motor preparation is suggested by the positive effects of imagining movements on motor learning, the similarity between the neural structures involved, and the similar physiological correlates observed in both imaging and preparing. The content of motor representations can be inferred from motor images at a (...)
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  • Is stiffness the mainspring of posture and movement?Z. Hasan - 1992 - Behavioral and Brain Sciences 15 (4):756-758.
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  • Are errors in final position destined before the movement begins?Z. Hasan - 1992 - Behavioral and Brain Sciences 15 (2):341-342.
  • The Ecological Approach to Visual Perception.Marc H. Bornstein - 1980 - Journal of Aesthetics and Art Criticism 39 (2):203-206.
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  • Kinesthesia and unique solutions for control of multijoint movements.S. C. Gandevia - 1992 - Behavioral and Brain Sciences 15 (2):335-335.
  • Does the nervous system depend on kinesthetic information to control natural limb movements?S. C. Gandevia & David Burke - 1992 - Behavioral and Brain Sciences 15 (4):614-632.
    This target article draws together two groups of experimental studies on the control of human movement through peripheral feedback and centrally generated signals of motor commands. First, during natural movement, feedback from muscle, joint, and cutaneous afferents changes; in human subjects these changes have reflex and kinesthetic consequences. Recent psychophysical and microneurographic evidence suggests that joint and even cutaneous afferents may have a proprioceptive role. Second, the role of centrally generated motor commands in the control of normal movements and movements (...)
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  • Early stages in a sensorimotor transformation.Martha Flanders, Stephen I. Helms Tillery & John F. Soechting - 1992 - Behavioral and Brain Sciences 15 (2):309-320.
    We present a model for several early stages of the sensorimotor transformations involved in targeted arm movement. In psychophysical experiments, human subjects pointed to the remembered locations of randomly placed targets in three-dimensional space. They made consistent errors in distance, and from these errors stages in the sensorimotor transformation were deduced. When subjects attempted to move the right index finger to a virtual target they consistently undershot the distance of the more distal targets. Other experiments indicated that the error was (...)
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  • The information capacity of the human motor system in controlling the amplitude of movement.Paul M. Fitts - 1954 - Journal of Experimental Psychology 47 (6):381.
  • Enactivist vision.Jerome A. Feldman - 1992 - Behavioral and Brain Sciences 15 (1):35-36.
  • Decision field theory: A dynamic-cognitive approach to decision making in an uncertain environment.Jerome R. Busemeyer & James T. Townsend - 1993 - Psychological Review 100 (3):432-459.
  • Neural dynamics of planned arm movements: Emergent invariants and speed-accuracy properties during trajectory formation.Daniel Bullock & Stephen Grossberg - 1988 - Psychological Review 95 (1):49-90.
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  • Coordinate transformation and limb movements: There may be more complexity than meets the eye.James R. Bloedel - 1992 - Behavioral and Brain Sciences 15 (2):326-326.
  • Does the nervous system use equilibrium-point control to guide single and multiple joint movements?E. Bizzi, N. Hogan, F. A. Mussa-Ivaldi & S. Giszter - 1992 - Behavioral and Brain Sciences 15 (4):603-613.
  • Adaptability of innate motor patterns and motor control mechanisms.M. B. Berkinblit, A. G. Feldman & O. I. Fukson - 1986 - Behavioral and Brain Sciences 9 (4):585-599.
  • For effective sensorimotor processing must there be explicit representations and reconciliation of differing frames of reference?Garrett E. Alexander - 1992 - Behavioral and Brain Sciences 15 (2):321-322.
  • How does the nervous system control the equilibrium trajectory?S. V. Adamovich - 1992 - Behavioral and Brain Sciences 15 (4):704-705.
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  • Bright Air, Brilliant Fire: On the Matter of the Mind.Gerald M. Edelman - 1992 - Penguin Books.
    The author takes the reader on a tour that covers such topics as computers, evolution, Descartes, Schrodinger, and the nature of perception, language, and invididuality. He argues that biology provides the key to understanding the brain. Underlying his argument is the evolutionary view that the mind arose at a definite time in history. This book ponders connections between psychology and physics, medicine, philosophy, and more. Frequently contentious, Edelman attacks cognitive and behavioral approaches, which leave biology out of the picture, as (...)
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  • A Dynamic Systems Approach to the Development of Cognition and Action.David Morris, E. Thelen & L. B. Smith - 1997 - International Studies in the Philosophy of Science 11 (2).
  • Are movement parameters recognizably coded in the activity of single neurons?Eberhard E. Fetz - 1992 - Behavioral and Brain Sciences 15 (4):679-690.
     
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  • Can sense be made of spinal interneuron circuits?D. A. McCrea - 1992 - Behavioral and Brain Sciences 15 (4):633-643.
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  • Fundamentals of motor control, kinesthesia and spinal neurons: in search of a theory.A. G. Feldman - 1992 - Behavioral and Brain Sciences 15 (4):735-737.
     
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  • Equilibrium points and sensory templates.P. R. Burgess - 1992 - Behavioral and Brain Sciences 15 (4):720-722.
     
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  • Functional heterogeneity with structural homogeneity: how does the cerebellum operate?James R. Bloedel - 1992 - Behavioral and Brain Sciences 15 (4):666-678.
     
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  • Are we able to preserve a motor command in the changing environment?Mark L. Latash - 1992 - Behavioral and Brain Sciences 15 (4):771-773.
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  • Do cortical and basal ganglionic motor areas use “motor programs” to control movement?Garrett E. Alexander, Mahlon R. DeLong & Michael D. Crutcher - 1992 - Behavioral and Brain Sciences 15 (4):656-665.
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  • Movement control hypotheses: A lesson from history.Gyan C. Agarwal - 1992 - Behavioral and Brain Sciences 15 (4):705-706.
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