DocumentCode
3030463
Title
Effects of hand feedback fidelity on near space pointing performance and user acceptance
Author
Pusch, Andreas ; Martin, Olivier ; Coquillart, Sabine
Author_Institution
INRIA Grenoble Rhone-Alpes - LIG, St. Ismier, France
fYear
2011
fDate
19-20 March 2011
Firstpage
97
Lastpage
102
Abstract
In this paper, we report on an experiment conducted to test the effects of different hand representations on near space pointing performance and user preference. Subjects were presented with varying levels of hand realism, including real hand video, a high and a low level 3D hand model and an ordinary 3D pointer arrow. Behavioural data revealed that an abstract hand substitute like a 3D pointer arrow leads to significantly larger position estimation errors in terms of lateral target overshooting when touching virtual surfaces with only visual hand movement constraints. Further, questionnaire results show that a higher fidelity hand is preferred over lower fidelity representations for different aspects of the task. But we cannot conclude that realtime video feedback of the own hand is better rated than a high level static 3D hand model. Overall, these results, which largely confirm previous research, suggest that, although a higher fidelity feedback of the hand is desirable from an user acceptance point of view, motor performance seems not to be affected by varying degrees of limb realism - as long as a hand-like shape is provided.
Keywords
ergonomics; gesture recognition; motion estimation; solid modelling; virtual reality; 3D hand model; 3D pointer arrow; hand feedback fidelity; hand representation; near space pointing performance; position estimation error; real hand video; target overshooting; user acceptance; user preference; virtual surface; Accuracy; Biological system modeling; Correlation; Solid modeling; Stability analysis; Three dimensional displays; Visualization; Near space interaction; co-location; hand displacement; limb attribution; perception; video see-through head-mounted display; visuo-proprioceptive sensory conflict;
fLanguage
English
Publisher
ieee
Conference_Titel
VR Innovation (ISVRI), 2011 IEEE International Symposium on
Conference_Location
Singapore
Print_ISBN
978-1-4577-0055-2
Electronic_ISBN
978-1-4577-0054-5
Type
conf
DOI
10.1109/ISVRI.2011.5759609
Filename
5759609
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