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Original Article

Visuomotor Memory for Target Location in Near and Far Reaching Spaces

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Pages 169-177 | Published online: 07 Aug 2010

References

  • Burle, B., & Bonnet, M. (1997). Further argument for the existence of a pacemaker in the human information processing system. Acta Psychologia, 97, 129-143.
  • Chua, R., & Elliott, D. (1993). Visual regulation of manual aiming. Human Movement Science, 12, 365-401.
  • Concetta Morrone, M., Ross, J., & Burr, D. (2005). Saccadic eye movements cause compression of time as well as space. Nature Neuroscience, 8, 950-954.
  • Crossman, E. R. F. W., & Goodeve, P. J. (1983). Feedback control of hand movement and Fitts' law. Quarterly Journal of Experimental Psychology: Human Experimental Psychology, 35(A), 251-278.
  • Elliott, D. (1988). The influence of visual target and limb information on manual aiming. Canadian Journal of Psychology, 42, 57-68.
  • Elliott, D., Hansen, S., Mendoza, J., & Tremblay, L. (2004). Learning to optimize speed, accuracy, and energy expenditure: A framework for understanding speed-accuracy relations in goal-directed aiming. Journal of Motor Behavior, 36, 339-351.
  • Elliott, D., Heath, M., Binsted, G., Ricker, K. L., Roy. E. A., & Chua, R. (1999). Goal-directed aiming: Correcting a forcespecification error with the right and left hands. Journal of Motor Behavior, 31, 309-324.
  • Elliott, D., Helsen, W. F., & Chua, R. (2001). A century later: Woodworth's (1899) two-component model of goal-directed aiming. Psychological Bulletin, 127, 342-357.
  • Engelbrecht, S. E., Berthier, N. E., & O'Sullivan, L. (2003). The undershooting bias: Learning to act optimally under uncertainty. Psychological Research, 14, 257-261.
  • Frolov, A. A., Prokopenko, R. A., Dufossè, M., & Ouezdou, F. B. (2006). Adjustment of the human arm viscoelastic properties to the direction of reaching. Biological Cybernetics, 94, 97-109.
  • Georgopoulos, A. P., Kalaska, J. F., Caminiti, R., & Massey, J. T. (1982). On the relations between the direction of two-dimensional arm movements and cell discharge in primate motor cortex. Journal of Neuroscience, 2, 1527-1537.
  • Glover, S. (2004). Separate visual representations in the planning and control of action. Behavioral and Brain Sciences, 27, 3-78.
  • Goodale, M. A., & Milner, A. D. (1992). Separate visual pathways for perception and action. Trends in Neuroscience, 15, 20-25.
  • Goodale, M. A., & Westwood, D. A. (2004). An evolving view of duplex vision: Separate but interacting cortical visual pathways for perception and action. Current Opinions in Neurobiology, 14, 203-211.
  • Heath, M. (2005). Role of limb and target vision in the online control of memory-guided reaches. Motor Control, 9, 281-309.
  • Heath, M., Rival, C., & Binsted, G. (2004). Can the motor system resolve a premovement bias in grip aperture: Online analysis of grasping the Müller-Lyer illusion. Experimental Brain Research, 158, 378-384.
  • Heath, M., Westwood, D. A., & Binsted, G. (2004). The control of memory-guided reaching movements in peripersonal space. Motor Control, 8, 76-106.
  • Jordan, K., Hyland, B. I., Wickens, J. R., & Anson, J. G. (2005). Motor preparation in a memorised delay task. Experimental Brain Research, 166, 102-108.
  • Khan, M. A., Elliott, D., Coull, J., Chua, R., & Lyons, J. (2002). Optimal control strategies under different feedback schedules: Kinematic evidence. Journal of Motor Behavior, 34, 45-57.
  • Khan, M. A., & Franks, I. M. (2000). The effect of practice on component submovements is dependent on visual feedback. Journal of Motor Behavior, 32, 227-240.
  • Krigolson, O., & Heath, M. (2004). Background visual cues and memory-guided reaches. Human Movement Science, 23, 861-867.
  • Loftus, A., Servos, P., Goodale, M. A., Mendarozqueta, N., & Mon-Williams, M. (2004). When two eyes are better than one in prehension: Monocular viewing and end-point variance. Experimental Brain Research, 158, 317-327.
  • Lyons, M., Hansen, S., Hurding, S., & Elliott, D. (2006). Optimizing rapid aiming behaviour: Movement kinematics depend on the cost of corrective modifications. Experimental Brain Research, 174, 95-100.
  • Meyer, D. A., Abrams, R. A., Kornblum, S., Wright, C. E., & Smith, J. E. K. (1988). Optimality in human motor performance: Ideal control of rapid aimed movements. Psychological Review, 95, 340-370.
  • Rolheiser, T. M., Binsted, G., & Brownell, K. J. (2006). Visuomotor representation decay: Influence on motor systems. Experimental Brain Research, 173, 698-707.
  • Ross, J., Concetta Morrone, M., & Burr, D. (1997). Compression of visual space before saccades. Nature, 386, 598-601.
  • Servos, P. (2000). Distance estimation in the visual and visuomotor systems. Experimental Brain Research, 130, 35-47.
  • Sheth, B. R., & Shimojo, S. (2001). Compression of space in visual memory. Vision Research, 41, 329-341.
  • Tipper, S. P., Lortie, C., & Baylis, G. C. (1992). Selective reaching: Evidence for action-centered attention. Journal of Experimental Psychology: Human Perception and Performance, 18, 891-905.
  • Toye, R. C. (1986). The effect of viewing position on the perceived layout of space. Perception and Psychophysics, 40, 85-92.
  • Viguier, A., Clément, G., & Trotter, Y. (2001). Distance perception within near visual space. Perception, 30, 115-124.
  • Wang, J., & Sainburg, R., L. (2004). Interlimb transfer of novel inertial dynamics is asymmetrical. Journal of Neurophysiology, 92, 349-360.
  • Westwood, D. A., Heath, M., & Roy, E. A. (2000). The effect of a pictorial illusion on closed-loop and open-loop prehension. Experimental Brain Research, 134, 456-463.
  • Westwood, D. A., Heath, M., & Roy, E. A. (2003). No evidence for accurate visuomotor memory: Systematic and variable error in memory-guided reaching. Journal of Motor Behavior, 35, 127-133.
  • Westwood, D. A., Robertson, C., & Heath, M. (2005). Action control: Independent effects of memory and monocular viewing on reaching accuracy. Brain and Cognition, 57, 257-260.
  • Woodworth, R. S. (1899). The accuracy of voluntary movement. Psychological Review, 3, 1-114.

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