Integration of visual information for saccade production

Hum Mov Sci. 2011 Dec;30(6):1009-21. doi: 10.1016/j.humov.2011.01.004. Epub 2011 May 14.

Abstract

To foveate a visual target, subjects usually execute a primary hypometric saccade (S1) bringing the target in perifoveal vision, followed by a corrective saccade (S2) or by more than one S2. It is still debated to what extent these S2 are pre-programmed or dependent only on post-saccadic retinal error. To answer this question, we used a visually-triggered saccade task in which target position and target visibility were manipulated. In one-third of the trials, the target was slightly displaced at S1 onset (so-called double step paradigm) and was maintained until the end of S1, until the start of the first S2 or until the end of the trial. Experiments took place in two visual environments: in the dark and in a dimly lit room with a visible random square background. The results showed that S2 were less accurate for shortest target durations. The duration of post-saccadic visual integration thus appears as the main factor responsible for corrective saccade accuracy. We also found that the visual context modulates primary saccade accuracy, especially for the most hypometric subjects. These findings suggest that the saccadic system is sensitive to the visual properties of the environment and uses different strategies to maintain final gaze accuracy.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adult
  • Dark Adaptation / physiology
  • Female
  • Fixation, Ocular / physiology*
  • Fovea Centralis / physiology
  • Humans
  • Male
  • Orientation / physiology
  • Pattern Recognition, Visual / physiology
  • Reaction Time / physiology
  • Retina / physiology*
  • Saccades / physiology*
  • Social Environment
  • Visual Fields / physiology*
  • Visual Perception / physiology*