Related Experiment Videos

Influence of previous visual stimulus or saccade on saccadic reaction times in monkey

M C Dorris1, T L Taylor, R M Klein

  • 1Medical Research Council Group in Sensory-Motor Neuroscience, Department of Physiology, Queen's University, Kingston, Ontario K7L 3N6.

Insights

Previous visual or saccade activity influences saccadic reaction times (SRTs) in monkeys, even when spatially unpredictable. Monkeys showed slower SRTs when stimuli were opposite or at the same location, suggesting overlapping visuospatial and oculomotor activity.

Area of Science:

  • Neuroscience
  • Cognitive Science
  • Oculomotor Research

Background:

  • Saccadic reaction times (SRTs) are crucial for understanding sensorimotor processing.
  • Previous research primarily focused on post-target factors influencing SRTs.
  • Pre-target factors, like cueing, are known to affect SRTs, but less is understood about the influence of prior visual and saccadic activity.

Purpose of the Study:

  • To investigate how prior, spatially unpredictable visual stimuli or saccades influence subsequent saccadic reaction times (SRTs).
  • To determine if the history of visuospatial and oculomotor activity affects SRTs.
  • To explore the neural underpinnings of these influences.

Main Methods:

  • Monkeys were trained on two paradigms: saccade-saccade and stimulus-saccade.
  • In both, a first eccentric stimulus was presented before a final target, varying in location (same, opposite, orthogonal).
  • SRTs to the final target were measured, analyzing the impact of the first stimulus's location and timing.

Main Results:

  • In the saccade-saccade paradigm, SRTs were slowest when the final target was opposite the initial saccade.
  • In the stimulus-saccade paradigm, SRTs were slowest when the final target was at the same location as the initial stimulus.
  • These effects persisted across various stimulus intervals and decreased with increasing misalignment between successive stimuli.

Conclusions:

  • Prior visual and saccadic activity significantly influences saccadic reaction times, even without spatial predictability.
  • The findings suggest overlapping neural representations for visuospatial and oculomotor processing.
  • The stimulus-saccade paradigm results resemble human inhibition of return (IOR).

Related Concept Videos