DocumentCode
3601013
Title
A Nonlinear Model for Mouse Pointing Task Movement Time Analysis Based on Both System and Human Effects
Author
Almanji, Amur ; Payne, Alex R. ; Amor, Robert ; Davies, T. Claire
Author_Institution
Univ. of Auckland, Auckland, New Zealand
Volume
23
Issue
6
fYear
2015
Firstpage
1003
Lastpage
1011
Abstract
This paper provides a detailed model for analyzing movement time performance during rapid goal-directed point- and-click motions with a computer mouse. Twelve typically developed individuals and eleven youths with cerebral palsy conducted point and click computer tasks from which the model was developed. The proposed model is nonlinear and based on both system (target width and movement amplitude) and human effects (erroneous clicks, number of submovements, number of slip-offs, curvature index, and average speed). To ensure successful targeting by youths with cerebral palsy, the index of difficulty was limited to a range of 1.58 - 3.0 bits. For consistency, the same range was used with both groups. The most significant contributing human effect to movement time was found to be the curvature index for both typically developed individuals and individuals with cerebral palsy. This model will assist in algorithm development to improve cursor speed and accuracy for youths with cerebral palsy.
Keywords
biomechanics; brain; cerebral palsy; cursor speed; curvature index; goal-directed point-and-click motions; human effects; mouse pointing task movement time analysis; nonlinear model; Computational modeling; Computers; Error analysis; Indexes; Mathematical model; Mice; Predictive models; Fitts’s law; human performance modeling; movement time; point-and-click; speed-accuracy trade-off;
fLanguage
English
Journal_Title
Neural Systems and Rehabilitation Engineering, IEEE Transactions on
Publisher
ieee
ISSN
1534-4320
Type
jour
DOI
10.1109/TNSRE.2014.2377692
Filename
6991617
Link To Document