Recent results have shown that the way we categorize space varies as a function of the frame of reference. If the reference frame (RF) is another person vs. an object, the distance is judged as reduced. It has been suggested that such an effect is due to the spontaneous processing of the other's motor potentialities. To investigate the impact of movement representation on space perception, we used biological motion displays as a prime for a spatial categorization task. In Exp. 1, participants were presented with a point-light walker or a scrambled motion, and then judged the location (“Near” or “Far”) of a target with a human body or an inanimate object as RF. In Exp. 2, participants were primed with point-light walkers of different speeds: a runner, a normal walker and a slow walker. In Exp. 3 they were primed with a point-light display depicting a human body sitting down on or standing up from a chair, with a human body RF either oriented or not oriented towards the target. Results showed a reduced judged distance when the human body RF was primed with a point-light walker (Exp. 1). Furthermore, we found an additional reduction of the judged distance when priming with a runner (Exp. 2). Finally, Exp. 3 showed that the human body RF has to be target oriented as a precondition for priming effects of the point-light walker.

Priming biological motion changes extrapersonal space categorization / Fini, Chiara; Bardi, Lara; Troje, Nikolaus F.; Committeri, Giorgia; Brass, Marcel. - In: ACTA PSYCHOLOGICA. - ISSN 0001-6918. - STAMPA. - 172:(2017), pp. 77-83. [10.1016/j.actpsy.2016.11.006]

Priming biological motion changes extrapersonal space categorization

Fini, Chiara
Writing – Original Draft Preparation
;
2017

Abstract

Recent results have shown that the way we categorize space varies as a function of the frame of reference. If the reference frame (RF) is another person vs. an object, the distance is judged as reduced. It has been suggested that such an effect is due to the spontaneous processing of the other's motor potentialities. To investigate the impact of movement representation on space perception, we used biological motion displays as a prime for a spatial categorization task. In Exp. 1, participants were presented with a point-light walker or a scrambled motion, and then judged the location (“Near” or “Far”) of a target with a human body or an inanimate object as RF. In Exp. 2, participants were primed with point-light walkers of different speeds: a runner, a normal walker and a slow walker. In Exp. 3 they were primed with a point-light display depicting a human body sitting down on or standing up from a chair, with a human body RF either oriented or not oriented towards the target. Results showed a reduced judged distance when the human body RF was primed with a point-light walker (Exp. 1). Furthermore, we found an additional reduction of the judged distance when priming with a runner (Exp. 2). Finally, Exp. 3 showed that the human body RF has to be target oriented as a precondition for priming effects of the point-light walker.
2017
Biological motion; Body posture; Distance; Motor potential; Reference frame; Adolescent; Adult; Distance Perception; Humans; Motion Perception; Repetition Priming; Young Adult; Experimental and Cognitive Psychology; Developmental and Educational Psychology; Arts and Humanities (miscellaneous)
01 Pubblicazione su rivista::01a Articolo in rivista
Priming biological motion changes extrapersonal space categorization / Fini, Chiara; Bardi, Lara; Troje, Nikolaus F.; Committeri, Giorgia; Brass, Marcel. - In: ACTA PSYCHOLOGICA. - ISSN 0001-6918. - STAMPA. - 172:(2017), pp. 77-83. [10.1016/j.actpsy.2016.11.006]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1123913
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