Movement time analysis of mouse cursor steering task through linear paths

Noyel Deegayu Namal Bandara Thibbotuwawa · 2010

Constraint path movements require careful control of objects that are being moved, to achieve speed and accuracy. They are important forms of tasks in everyday life and in industrial environments. Until recently, for unknown reasons, little consideration has been given to generalizing Drury’s important model (1971), which is known to govern visually controlled constraint path movements. During the current experiments, the effect of path movement angle on movement time has been investigated. Drury’s (1971) model has been generalized to account for the effect of path angle. Further, the effect of path amplitude on visually controlled and ballistically performed constraint path movements has been investigated and quantified. Results showed a significant effect (p0.05) for ballistic movement times while a linear relationship seems to hold between ballistic movement time and path amplitude to the power of 0.5, irrespective of angle. A sinusoidal model has been proposed to account for the effect of path angle for ballistic movement times. Moreover, limits on visually controlled constraint path movements have been defined using speed vs. path width curves.

Read the paper · More papers on PaperTik