Title :
Learning of Temporal and Spatial Movement Aspects: A Comparison of Four Types of Haptic Control and Concurrent Visual Feedback
Author :
Rauter, Georg ; Sigrist, Roland ; Riener, Robert ; Wolf, Peter
Author_Institution :
Sensory-Motor Syst. (SMS) Lab., ETH Zurich, Zurich, Switzerland
Abstract :
In literature, the effectiveness of haptics for motor learning is controversially discussed. Haptics is believed to be effective for motor learning in general; however, different types of haptic control enhance different movement aspects. Thus, in dependence on the movement aspects of interest, one type of haptic control may be effective whereas another one is not. Therefore, in the current work, it was investigated if and how different types of haptic controllers affect learning of spatial and temporal movement aspects. In particular, haptic controllers that enforce active participation of the participants were expected to improve spatial aspects. Only haptic controllers that provide feedback about the task´s velocity profile were expected to improve temporal aspects. In a study on learning a complex trunk-arm rowing task, the effect of training with four different types of haptic control was investigated: position control, path control, adaptive path control, and reactive path control. A fifth group (control) trained with visual concurrent augmented feedback. As hypothesized, the position controller was most effective for learning of temporal movement aspects, while the path controller was most effective in teaching spatial movement aspects of the rowing task. Visual feedback was also effective for learning temporal and spatial movement aspects.
Keywords :
adaptive control; feedback; motion control; teaching; adaptive path control; complex trunk-arm rowing task; concurrent visual feedback; haptic control; motor learning; position control; reactive path control; spatial movement aspect learning; spatial movement aspect teaching; task velocity profile; temporal movement aspect learning; visual concurrent augmented feedback; Haptic interfaces; Position control; Spatial analysis; Torque control; Training; Trajectory; Visualization; Concurrent augmented haptic feedback; complex real-life task; concurrent augmented haptic feedback; concurrent augmented visual feedback; control strategy; motor learning;
Journal_Title :
Haptics, IEEE Transactions on
DOI :
10.1109/TOH.2015.2431686