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Christian Beresford Jarrett

Publications and source records attributed to Christian Beresford Jarrett.

5 recordsLinked to original sources

The volitional inhibition of anticipatory ocular pursuit using a stop signal.

Unlike limb movements, smooth pursuit eye movements cannot normally be performed in the absence of a target. However, when subjects have a high expectancy of an imminent target appearance, the situation changes, and anticipatory smooth pursuit (ASP) tends to precede target onset by several hundred milliseconds. The velocity of this ASP is scaled predictively according to expected target velocity. And when an upcoming target is unexpectedly altered, or fails to appear, ASP continues regardless for approximately 150-200 ms before modification by visual feedback begins [J. Neurophysiol., 84 (2000) 2340]. These and other observations led to the earlier suggestion that ASP might be ballistic, being pre-programmed from start to finish. Two experiments with different timing parameters were therefore performed to test this hypothesis using a version of Logan's [Psychol. Rev., 91 (1984) 295] stop signal task. The aim was to test whether ASP could be stopped at will, and if so, whether the time taken to stop varied as a function of the time since ASP onset. Results showed that in response to a stop signal, ASP can be inhibited at any point in its trajectory, and for the majority of subjects in experiment 1, and all the subjects in experiment 2, with a latency that does not change significantly with target speed or time since ASP onset. These results provide the first demonstration that anticipatory movements can be stopped volitionally in response to a stop signal. Possible cognitive and neurophysiological mechanisms underlying this process are discussed.

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In Briefs.

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In Briefs.

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Journal Article↗

Volitional scaling of anticipatory ocular pursuit velocity using precues.

Human subjects cannot normally perform smooth eye movements in the absence of a target. However, the repeated presentation of identical, transient target motion stimuli, preceded by warning cues, leads to the build up of anticipatory smooth pursuit (ASP) eye movements several hundred milliseconds prior to stimulus onset. The present study sought to investigate whether subjects are able to volitionally scale ASP speed, as well as select pursuit direction, in advance of target motion stimuli of random direction (left vs. right) and speed (10, 20, 30 and 40 degrees /s), given stationary precues predictive of both these target parameters. The subjects' success at this task is discussed in terms of their ability to volitionally scale the internal store of target velocity information postulated to drive ASP.

Brain↗