Joystick acquisition in tufted capuchins (Cebus apella)

A number of nonhuman primate species have demonstrated the ability to use a joystick to control a cursor on a computer screen, yet the acquisition of this skill has not been the focus of systematic inquiry. Here, we examined joystick acquisition in four tufted capuchins under two directional relationships of joystick movement and resultant cursor displacement, isomorphic and inverted. To document the natural history of the acquisition of this skill, we recorded the development of visual tracking of the cursor and body tilting. Rates of acquisition were comparable between the two conditions. After mastering the task in one condition, subjects remastered the task at an accelerated rate in the opposing condition. All subjects significantly increased or maintained high proportions of cursor tracking throughout acquisition. All subjects demonstrated a postural tilt while moving the cursor from the mid-phase of acquisition through task mastery. In the isomorphic condition, all subjects tilted significantly more often in the direction of goal location than in the opposite direction. In three of the four series of tilting that were scored for subjects in the inverted condition, tilting occurred significantly more often toward the direction of goal location than the direction of required hand movement. Together these findings suggest that body tilting participates in the organization of directional movement of the cursor rather than reflecting merely the motoric requirements of the task (to manipulate a joystick).

[1]  David A. Washburn,et al.  The NASA/LRC computerized test system , 1990, Behavior research methods, instruments, & computers : a journal of the Psychonomic Society, Inc.

[2]  Jean Roeder Social development, learning and behaviour , 1994 .

[3]  E W Menzel,et al.  Chimpanzee (Pan troglodytes) spatial problem solving with the use of mirrors and televised equivalents of mirrors. , 1985, Journal of comparative psychology.

[4]  J Fagot,et al.  Manual and hemispheric specialization in the manipulation of a joystick by baboons (Papio papio). , 1993, Behavioral neuroscience.

[5]  K. Newell Motor skill acquisition. , 1991, Annual review of psychology.

[6]  E. C. Poulton,et al.  Tracking skill and manual control , 1974 .

[7]  D A Washburn,et al.  Rhesus monkeys (Macaca mulatta), video tasks, and implications for stimulus-response spatial contiguity. , 1989, Journal of comparative psychology.

[8]  H. Klüver,et al.  Behavior Mechanisms in Monkeys , 1936 .

[9]  M. W. Andrews,et al.  Live-Social-Video Reward Maintains Joystick Task Performance in Bonnet Macaques , 1993, Perceptual and motor skills.

[10]  M W Andrews Video-Task Paradigm Extended to Saimiri , 1993, Perceptual and motor skills.