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Visuomotor delay in interceptive actions

Published online by Cambridge University Press:  14 May 2008

Nicolas Benguigui
Affiliation:
Laboratory Motor Control and Perception (EA 4042), University Paris-Sud, 91405 Orsay Cedex, France; nicolas.benguigui@u-psud.frhttp://www.cress.u-psud.fr/monde/benguigui.htmRobin.baures@u-psud.frhttp://www.cress.u-psud.fr/monde/baures.htm
Robin Baurès
Affiliation:
Laboratory Motor Control and Perception (EA 4042), University Paris-Sud, 91405 Orsay Cedex, France; nicolas.benguigui@u-psud.frhttp://www.cress.u-psud.fr/monde/benguigui.htmRobin.baures@u-psud.frhttp://www.cress.u-psud.fr/monde/baures.htm
Cyrille Le Runigo
Affiliation:
Laboratory Efficience et Deficience Motrices, University Montpellier1, 34090 Montpellier, France. cyrille_lerunigo@yahoo.frhttp://www.edm.univ-montp1.fr/affich_cv.php?id=95

Abstract

Neural delays, which are generally defined as visuomotor delays in interceptive actions, must be compensated to enable accurate timing in movement. Visuomotor delays can depend on the kind of task, the use of information, and the skill of the performer. The compensation for such delays does not necessarily require prediction or representation but can be made by an attunement of some parameters in what is called a law of control.

Type
Open Peer Commentary
Copyright
Copyright ©Cambridge University Press 2008

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References

Benguigui, N., Broderick, M. P., Baurès, R. & Amorim, M. A. (in press) Motion prediction and the velocity effect in children. British Journal of Developmental Psychology.Google Scholar
Benguigui, N., Ripoll, H. & Broderick, M. P. (2003) Time-to-contact estimation of accelerated stimuli is based on first-order information. Journal of Experimental Psychology: Human Perception and Performance 29(6):1083–101.Google ScholarPubMed
Bennett, K. M. B. & Castiello, U. (1995) Reorganization of prehension components following perturbation of object size. Psychology and Aging 10:204–14.CrossRefGoogle ScholarPubMed
Bootsma, R. J. & van Wieringen, P. C. W. (1990) Timing an attacking forehand drive in table tennis. Journal of Experimental Psychology: Human Perception and Performance 16:2129.Google Scholar
Jacobs, D. M. & Michaels, C. F. (2006) Lateral interception I: Operative optical variables, attunement, and calibration. Journal of Experimental Psychology: Human Perception and Performance 32(2):443–58.Google ScholarPubMed
Le Runigo, C., Benguigui, N., & Bardy, B. G. (2005) Perception-action coupling and expertise in interceptive action. Human Movement Science 24:429–45.CrossRefGoogle Scholar
Lee, D. N., Young, D. S., Reddish, P., Lough, S. & Clayton, T. (1983) Visual timing in hitting an accelerating ball. Quarterly Journal of Experimental Psychology 35:333–46.CrossRefGoogle ScholarPubMed
Lobjois, R., Benguigui, N. & Bertsch, J. (2006) The effect of aging and tennis playing on coincidence-timing accuracy. Journal of Aging and Physical Activity 14(1):7598.CrossRefGoogle ScholarPubMed
McLeod, P. (1987) Visual reaction time and high-speed ball games. Perception 16 4959.CrossRefGoogle ScholarPubMed
Tresilian, J. R. (1993) Four questions of time to contact: A critical examination of research on interceptive timing. Perception 22(6):653–80.CrossRefGoogle ScholarPubMed
Tresilian, J. R., Plooy, A. & Carroll, T. J. (2004) Constraints on the spatiotemporal accuracy of interceptive action: Effects of target size on hitting a moving target. Experimental Brain Research 155:509–26.CrossRefGoogle ScholarPubMed
Warren, W. H. (1988) Actions mode and laws of control for the visual guidance of action. In: Complex movement behavior: The motor-action controversy, ed. Meijer, O. G. & Roth, K., pp. 339–80. North-Holland.CrossRefGoogle Scholar
Whiting, H. T. A., Gill, E. B. & Stephenson, J. M. (1970). Critical time intervals for taking in flight information in a ball-catching task. Ergonomics 13:265–72.CrossRefGoogle Scholar