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M T Oakley

Publications and source records attributed to M T Oakley.

2 recordsLinked to original sources

The conjoint influence of spatial selective attention and motor set on very short latency VERs.

This study investigated whether motor set, in conjunction with spatial selective attention (sensory set), influences the transmission of incoming visual information at a precortical level in humans. Stimuli were presented concomitantly in both the right and left visual fields while subjects attended to the relevant visual field (either left or right) on a given trial, and was prepared to make one of three kinds of responses (an eye movement, foot-lift, or counting) to target stimuli appearing in that field. VERs were obtained from frontal and parietal sites. A deflection falling within a 40-70 msec range was more negative under the attend than under the unattend condition for the eye movement task, the opposite being the case for the counting task. No attention effect was found for the foot-lift task. The findings were interpreted as providing support for the precortical hypothesis.

Adult↗

Subcortical gating in the human visual system during spatial selective attention.

The question of whether subcortical gating occurs as a function of spatial selective attention remains unsettled. This issue was investigated, using the paradigm of Eason et al. (1969) wherein subjects are instructed to attend to a specified location in a given visual field while attempting to ignore stimuli presented in the opposite field. Visual evoked responses falling within the 40-70 ms range were found to be significantly more negative when the location at which the evoking stimulus appeared was being attended to than when it was not. Also, later deflections (100-200 ms) were enhanced in amplitude and negatively biased. The very early effect provides further evidence for spatial attention-induced precortical gating. The later effects provide additional evidence for the amplitude enhancement of 'exogenous' components, along with the possible involvement of glial cell activity in the generation of slow wave negativity.

Adult↗