DocumentCode
902156
Title
Humans Can Integrate Force Feedback to Toes in Their Sensorimotor Control of a Robotic Hand
Author
Panarese, Alessandro ; Edin, Benoni B. ; Vecchi, Fabrizio ; Carrozza, Maria C. ; Johansson, Roland S.
Author_Institution
ARTSLab, Scuola Super Sant Anna, Pontedera, Italy
Volume
17
Issue
6
fYear
2009
Firstpage
560
Lastpage
567
Abstract
Tactile sensory feedback is essential for dexterous object manipulation. Users of hand myoelectric prostheses without tactile feedback must depend essentially on vision to control their device. Indeed, improved tactile feedback is one of their main priorities. Previous research has provided evidence that conveying tactile feedback can improve prostheses control, although additional effort is required to solve problems related to pattern recognition learning, unpleasant sensations, sensory adaptation, and low spatiotemporal resolution. Still, these studies have mainly focused on providing stimulation to hairy skin regions close to the amputation site, i.e., usually to the upper arm. Here, we explored the possibility to provide tactile feedback to the glabrous skin of toes, which have mechanical and neurophysiological properties similar to the fingertips. We explored this paradigm in a grasp-and-lift task, in which healthy participants controlled two opposing digits of a robotic hand by changing the spacing of their index finger and thumb. The normal forces applied by the robotic fingertips to a test object were fed back to the right big and second toe. We show that within a few lifting trials, all the participants incorporated the force feedback received by the foot in their sensorimotor control of the robotic hand.
Keywords
electromyography; force feedback; haptic interfaces; manipulators; medical robotics; prosthetics; dexterous object manipulation; force feedback; grasp and lift task; hand myoelectric prostheses; prostheses control; robotic fingertips; robotic hand sensorimotor control; tactile sensory feedback; toe glabrous skin; toes; Haptic display; robotic hand; sensory substitution; tactile feedback; Adult; Feedback, Sensory; Hand; Humans; Male; Man-Machine Systems; Physical Stimulation; Robotics; Stress, Mechanical; Systems Integration; Toes; User-Computer Interface; Young Adult;
fLanguage
English
Journal_Title
Neural Systems and Rehabilitation Engineering, IEEE Transactions on
Publisher
ieee
ISSN
1534-4320
Type
jour
DOI
10.1109/TNSRE.2009.2021689
Filename
4956985
Link To Document