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Updated: May 22, 2026

Study Motor Skill Learning by Single-pellet Reaching Tasks in Mice
Published on: March 4, 2014
Priming of future states in complex motor skills
Iris Güldenpenning1, Wilfried Kunde, Matthias Weigelt
1Faculty of Psychology and Sport Science, Bielefeld University, Germany. iris.gueldenpenning@uni-bielefeld.de
Abstract:
The ability to anticipate future states of perceived actions is an important faculty for motor control and the generation of coordinated social interaction. Here, we studied whether the perception of a static posture of a complex movement automatically activates representations of future states of this particular movement event. We did this by using a priming paradigm with photographs of a high-jump movement. Participants judged whether a picture depicted a posture from the approach or flight phase of that movement. To evaluate expertise-dependent effects of priming, non-athletes and athletes were compared. Results revealed faster responding when prime and target pictures were assigned to the same motor response (response priming), and when the temporal order of prime and target matched the temporal order of the depicted postures in a real high jump (temporal-order priming). Whereas experts showed a temporal-order effect even within the same response category, such an effect occurred for novices only between response categories. A second experiment confirmed that these between-group differences are due to domain-specific motor expertise (i.e., high jump) rather than to general motor experiences. Altogether our results suggest that motor expertise results in a more fine-grained posture-based movement representation.
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