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Erschienen in: Experimental Brain Research 3/2004

01.10.2004 | Research Note

Can the motor system resolve a premovement bias in grip aperture? Online analysis of grasping the Müller-Lyer illusion

verfasst von: Matthew Heath, Christina Rival, Gordon Binsted

Erschienen in: Experimental Brain Research | Ausgabe 3/2004

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Abstract

The goal of the present investigation was to determine the time-course by which the motor system might resolve the context-dependent effects of a visual illusion [i.e., the Müller-Lyer (ML) figure]. Specifically, we asked participants to scale their grip aperture (GA) to the perceived size of an object embedded within a ML figure in advance of closed-loop (CL) and open-loop (OL) grasping movements. As a result, premovement GA was biased in a direction consistent with the perceptual effects of the illusion. We reasoned that such a manipulation might provide a novel opportunity to determine whether the motor system is able to resolve a biased GA immediately following the onset of a response [i.e., in accord with the perception/action model (PAM); Milner and Goodale 1995, The visual brain in action, Oxford University Press], or gradually as the action unfolds [i.e., in accord with the planning/control model (PCM); Glover and Dixon 2002, Percept Psychophys 64:266–278]. It was found that biasing GA in advance of movement resulted in a reliable effect of the ML figure throughout CL and OL trials (i.e., up to 80% of grasping time). Although the present findings appear contrary to the theoretical tenets of the PAM and the PCM, it is proposed that biasing GA in advance of movement leads to offline visual processing and a feedforward mode of grasping control, thus accounting for the illusion-induced effect throughout the grasping response.
Fußnoten
1
In Experiment 2 of their work, Glover and Dixon (2002) state that analysis of closed-loop trials “...revealed evidence for a constant effect of the illusion (λ=26.9) but no clear evidence that the effect varied over time (λ=1.2)” (page 273).
 
Literatur
Zurück zum Zitat Aglioti S, DeSouza JFX, Goodale MA (1995) Size-contrast illusions deceive the eye but not the hand. Curr Biol 5:679–685PubMed Aglioti S, DeSouza JFX, Goodale MA (1995) Size-contrast illusions deceive the eye but not the hand. Curr Biol 5:679–685PubMed
Zurück zum Zitat Bridgeman B, Kirch M, Sperling A (1981) Segregation of cognitive and motor aspects of visual functioning using induced motion. Percept Psychophys 29: 336–342PubMed Bridgeman B, Kirch M, Sperling A (1981) Segregation of cognitive and motor aspects of visual functioning using induced motion. Percept Psychophys 29: 336–342PubMed
Zurück zum Zitat Danckert JA, Sharif N, Haffenden AM, Schiff KC, Goodale MA (2002). A temporal analysis of grasping in the Ebbinghaus illusion: planning versus online control. Exp Brain Res 144:275–280CrossRefPubMed Danckert JA, Sharif N, Haffenden AM, Schiff KC, Goodale MA (2002). A temporal analysis of grasping in the Ebbinghaus illusion: planning versus online control. Exp Brain Res 144:275–280CrossRefPubMed
Zurück zum Zitat Elliott D, Madalena J (1987) The influence of premovement visual information on manual aiming. Q J Exp Psychol 39A:541–559 Elliott D, Madalena J (1987) The influence of premovement visual information on manual aiming. Q J Exp Psychol 39A:541–559
Zurück zum Zitat Elliott D, Heath M, Binsted G, Ricker KL, Roy EA, Chua R. (1999) Goal-directed aiming: correcting a force specification error with the right and left hands. J Mot Behav 31:309–324PubMed Elliott D, Heath M, Binsted G, Ricker KL, Roy EA, Chua R. (1999) Goal-directed aiming: correcting a force specification error with the right and left hands. J Mot Behav 31:309–324PubMed
Zurück zum Zitat Fecteau JH, Chua R, Franks I, Enns JT (2001) Visual awareness and the on-line modification of action. Can J Exp Psychol 55:104–110PubMed Fecteau JH, Chua R, Franks I, Enns JT (2001) Visual awareness and the on-line modification of action. Can J Exp Psychol 55:104–110PubMed
Zurück zum Zitat Franz VH (2003) Planning versus online control: dynanmic illusion effects in grasping? Spat Vis 16:211–233CrossRefPubMed Franz VH (2003) Planning versus online control: dynanmic illusion effects in grasping? Spat Vis 16:211–233CrossRefPubMed
Zurück zum Zitat Franz VH, Gegenfurtner KR, Bülthoff H, Fahle M (2000) Grasping visual illusions: no evidence for a dissociation between perception and action. Psychol Sci 11:20–25CrossRefPubMed Franz VH, Gegenfurtner KR, Bülthoff H, Fahle M (2000) Grasping visual illusions: no evidence for a dissociation between perception and action. Psychol Sci 11:20–25CrossRefPubMed
Zurück zum Zitat Glover S, Dixon P (2001) Motor adaptation to an optical illusion. Exp Brain Res 137:254–258 Glover S, Dixon P (2001) Motor adaptation to an optical illusion. Exp Brain Res 137:254–258
Zurück zum Zitat Glover S, Dixon P (2002) Dynamic effects of the Ebbinghaus illusion in grasping: Support for a planning/control model of action. Percept Psychophys 64:266–278PubMed Glover S, Dixon P (2002) Dynamic effects of the Ebbinghaus illusion in grasping: Support for a planning/control model of action. Percept Psychophys 64:266–278PubMed
Zurück zum Zitat Glover S, Rosenbaum DA, Graham J, Dixon P (2004) Grasping the mean of words. Exp Brain Res 154:103–108CrossRefPubMed Glover S, Rosenbaum DA, Graham J, Dixon P (2004) Grasping the mean of words. Exp Brain Res 154:103–108CrossRefPubMed
Zurück zum Zitat Goodale MA, Pelisson D, Prablanc C (1986) Large adjustments in visually-guided reaching do not depend on vision of the hand or perception of target displacement. Nature 320:748–750PubMed Goodale MA, Pelisson D, Prablanc C (1986) Large adjustments in visually-guided reaching do not depend on vision of the hand or perception of target displacement. Nature 320:748–750PubMed
Zurück zum Zitat Haffenden AM, Goodale MA (1998) The effect of pictorial illusion on prehension and perception. J Cogn Neurosci 10:122–136CrossRefPubMed Haffenden AM, Goodale MA (1998) The effect of pictorial illusion on prehension and perception. J Cogn Neurosci 10:122–136CrossRefPubMed
Zurück zum Zitat Heath M, Westwood DA (2003) Can a visual representation support the online control of memory-dependent reaching? Evidence from a variable spatial mapping paradigm. Motor Control 7:346–361PubMed Heath M, Westwood DA (2003) Can a visual representation support the online control of memory-dependent reaching? Evidence from a variable spatial mapping paradigm. Motor Control 7:346–361PubMed
Zurück zum Zitat Heath M, Hodges NJ, Chua R, Elliott D (1998) On-line control of rapid aiming movements: unexpected target perturbations and movement kinematics. Can J Exp Psychol 52:163–173 Heath M, Hodges NJ, Chua R, Elliott D (1998) On-line control of rapid aiming movements: unexpected target perturbations and movement kinematics. Can J Exp Psychol 52:163–173
Zurück zum Zitat Heath M, Westwood DA, Binsted G (2004) The control of memory-guided reaching movements in peripersonal space. Motor Control 8:76–106PubMed Heath M, Westwood DA, Binsted G (2004) The control of memory-guided reaching movements in peripersonal space. Motor Control 8:76–106PubMed
Zurück zum Zitat Hu Y, Goodale MA (2000) Grasping after a delay shifts size-scaling from absolute to relative metrics. J Cogn Neurosci 12:856–868CrossRefPubMed Hu Y, Goodale MA (2000) Grasping after a delay shifts size-scaling from absolute to relative metrics. J Cogn Neurosci 12:856–868CrossRefPubMed
Zurück zum Zitat Hu Y, Eagleson R, Goodale MA (1999) The effect of delay on the kinematics of grasping. Exp Brain Res 126:109–116CrossRefPubMed Hu Y, Eagleson R, Goodale MA (1999) The effect of delay on the kinematics of grasping. Exp Brain Res 126:109–116CrossRefPubMed
Zurück zum Zitat Jeannerod M (1984) The timing of natural prehension movements. J Mot Behav 16:235–254PubMed Jeannerod M (1984) The timing of natural prehension movements. J Mot Behav 16:235–254PubMed
Zurück zum Zitat Meulenbroek RGJ, Rosenbaum DA, Jansen C, Vaughan J, Vogt S. (2001). Multijoint grasping movements: Simulated and observed effects of object location, object size, and initial aperture. Exp Brain Res 138:219–234CrossRefPubMed Meulenbroek RGJ, Rosenbaum DA, Jansen C, Vaughan J, Vogt S. (2001). Multijoint grasping movements: Simulated and observed effects of object location, object size, and initial aperture. Exp Brain Res 138:219–234CrossRefPubMed
Zurück zum Zitat Milner AD, Goodale MA (1995) The visual brain in action. Oxford University Press, Oxford Milner AD, Goodale MA (1995) The visual brain in action. Oxford University Press, Oxford
Zurück zum Zitat Pavani F, Boscagli I, Benvenuti F, Rabuffetti M, Farne A (1999) Are perception and action affected differently by the Titchener circles illusion? Exp Brain Res 127:95–101CrossRefPubMed Pavani F, Boscagli I, Benvenuti F, Rabuffetti M, Farne A (1999) Are perception and action affected differently by the Titchener circles illusion? Exp Brain Res 127:95–101CrossRefPubMed
Zurück zum Zitat Pisella L, Grea H, Tilikete C, Vighetto A, Desmurget M, Rode G, Boisson D, Rossetti Y (2000) An ‘automatic pilot’ for the hand in human posterior parietal cortex: toward reinterpreting optic ataxia. Nat Neurosci 3:729–736CrossRefPubMed Pisella L, Grea H, Tilikete C, Vighetto A, Desmurget M, Rode G, Boisson D, Rossetti Y (2000) An ‘automatic pilot’ for the hand in human posterior parietal cortex: toward reinterpreting optic ataxia. Nat Neurosci 3:729–736CrossRefPubMed
Zurück zum Zitat Plamondon R (1995) A kinematic theory of rapid human movements. Part 1. Movement representation and generation. Biol Cybern 72:295–307CrossRefPubMed Plamondon R (1995) A kinematic theory of rapid human movements. Part 1. Movement representation and generation. Biol Cybern 72:295–307CrossRefPubMed
Zurück zum Zitat Saling M, Mescheriakov S, Molokanova E, Stelmach GE, Berger M (1996) Grip reorganization during wrist transport: the influence of an altered aperture. Exp Brain Res 108:493–500PubMed Saling M, Mescheriakov S, Molokanova E, Stelmach GE, Berger M (1996) Grip reorganization during wrist transport: the influence of an altered aperture. Exp Brain Res 108:493–500PubMed
Zurück zum Zitat Savelsbergh GJP, Whiting HTA, Bootsma RJ (1991) Grasping tau. J Exp Psychol Hum Percept Perform 17:315–322CrossRefPubMed Savelsbergh GJP, Whiting HTA, Bootsma RJ (1991) Grasping tau. J Exp Psychol Hum Percept Perform 17:315–322CrossRefPubMed
Zurück zum Zitat Timmann D, Stelmach GE, Bloedel JR (1996) Grasping component alterations and limb transport. Exp Brain Res 108:486–492PubMed Timmann D, Stelmach GE, Bloedel JR (1996) Grasping component alterations and limb transport. Exp Brain Res 108:486–492PubMed
Zurück zum Zitat Vishton, PM, Rea JG, Cutting JE, Nunez LN (1999) Comparing effects of the horizontal-vertical illusion on grip scaling and judgment: relative versus absolute, not perception versus action. J Exp Psychol Hum Percept Perform 25:1695–1672 Vishton, PM, Rea JG, Cutting JE, Nunez LN (1999) Comparing effects of the horizontal-vertical illusion on grip scaling and judgment: relative versus absolute, not perception versus action. J Exp Psychol Hum Percept Perform 25:1695–1672
Zurück zum Zitat Westwood DA, Goodale MA (2003) Perceptual illusion and the real-time control of action. Spat Vis 16:243–254CrossRefPubMed Westwood DA, Goodale MA (2003) Perceptual illusion and the real-time control of action. Spat Vis 16:243–254CrossRefPubMed
Zurück zum Zitat Westwood DA, Chapman C, Roy EA (2000a) Pantomimed prehension may be mediated by the ventral visual stream. Exp Brain Res 130:545–548CrossRefPubMed Westwood DA, Chapman C, Roy EA (2000a) Pantomimed prehension may be mediated by the ventral visual stream. Exp Brain Res 130:545–548CrossRefPubMed
Zurück zum Zitat Westwood DA, Heath M, Roy EA (2000b) The effect of a pictorial illusion on closed-loop and open-loop prehension. Exp Brain Res 134:456–463CrossRefPubMed Westwood DA, Heath M, Roy EA (2000b) The effect of a pictorial illusion on closed-loop and open-loop prehension. Exp Brain Res 134:456–463CrossRefPubMed
Zurück zum Zitat Westwood DA, McEachern T, Roy EA (2001) Delayed grasping of a Müller-Lyer figure. Exp Brain Res 141:166–173CrossRefPubMed Westwood DA, McEachern T, Roy EA (2001) Delayed grasping of a Müller-Lyer figure. Exp Brain Res 141:166–173CrossRefPubMed
Metadaten
Titel
Can the motor system resolve a premovement bias in grip aperture? Online analysis of grasping the Müller-Lyer illusion
verfasst von
Matthew Heath
Christina Rival
Gordon Binsted
Publikationsdatum
01.10.2004
Erschienen in
Experimental Brain Research / Ausgabe 3/2004
Print ISSN: 0014-4819
Elektronische ISSN: 1432-1106
DOI
https://doi.org/10.1007/s00221-004-1988-9

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