Skill transfer specificity shapes perception and action under varying environmental constraints

•Ice climbing task led to positive general and specific transfer.•Specific transfer could be due to specificity of ice tool and icefall affordances.•Ice climbing task provided specifying information for functional performance.•Successful performance in ice climbing requires attunement and calibratio...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Human movement science 2016-08, Vol.48, p.132-141
Hauptverfasser: Seifert, Ludovic, Wattebled, Léo, Orth, Dominic, L’Hermette, Maxime, Boulanger, Jérémie, Davids, Keith
Format: Artikel
Sprache:eng
Schlagworte:
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:•Ice climbing task led to positive general and specific transfer.•Specific transfer could be due to specificity of ice tool and icefall affordances.•Ice climbing task provided specifying information for functional performance.•Successful performance in ice climbing requires attunement and calibration to functional dynamical features of an icefall and an ice tool. Using an ecological dynamics framework, this study investigated the generality and specificity of skill transfer processes in organisation of perception and action using climbing as a task vehicle. Fluency of hip trajectory and orientation was assessed using normalized jerk coefficients exhibited by participants as they adapted perception and action under varying environmental constraints. Twelve recreational climbers were divided into two groups: one completing a 10-m high route on an indoor climbing wall; a second undertaking a 10-m high route on an icefall in a top-rope condition. We maintained the same level of difficulty between these two performance environments. An inertial measurement unit was attached each climber’s hips to collect 3D acceleration and 3D orientation data to compute jerk coefficient values. Video footage was used to record the ratio of exploratory/performatory movements. Results showed higher jerk coefficient values and number of exploratory movements for performance on the icefall route, perhaps due to greater functional complexity in perception and action required when climbing icefalls, which involves use of specific tools for anchorage. Findings demonstrated how individuals solve different motor problems, exploiting positive general transfer processes enabling participants to explore the pick-up of information for the perception of affordances specific to icefall climbing.
ISSN:0167-9457
1872-7646
DOI:10.1016/j.humov.2016.05.004