Author:
Heins Frauke,Masselink Jana,Scherer Joshua-Nikodemus,Lappe Markus
Abstract
AbstractThe accuracy of saccadic eye movements is maintained by saccadic adaptation, a learning mechanism that is proposed to rely on visual prediction error, i.e., a mismatch between the pre-saccadically predicted and post-saccadically experienced position of the saccade target. However, recent research indicates that saccadic adaptation might be driven by postdictive motor error, i.e., a retrospective estimation of the pre-saccadic target position based on the post-saccadic image. We investigated whether oculomotor behavior can be adapted based on post-saccadic target information alone. We measured eye movements and localization judgements as participants aimed saccades at an initially invisible target, which was always shown only after the saccade. Each such trial was followed by either a pre- or a post-saccadic localization trial. The target position was fixed for the first 100 trials of the experiment and, during the following 200 trials, successively shifted inward or outward. Saccade amplitude and the pre- and post-saccadic localization judgements adjusted to the changing target position. Our results suggest that post-saccadic information is sufficient to induce error-reducing adaptive changes in saccade amplitude and target localization, possibly reflecting continuous updating of the estimated pre-saccadic target location driven by postdictive motor error.
Funder
European Union’s Horizon 2020 research and innovation programme
Publisher
Springer Science and Business Media LLC
Reference48 articles.
1. Munoz, D. P., Broughton, J. R., Goldring, J. E. & Armstrong, I. T. Age-related performance of human subjects on saccadic eye movement tasks. Exp. Brain Res. 121, 391–400 (1998).
2. Warabi, T., Kase, M. & Kato, T. Effect of aging on the accuracy of visually guided saccadic eye movement. Ann. Neurol. 16, 449–454 (1984).
3. Abel, L. A., Schmidt, D., Dell’Osso, L. F. & Daroff, R. B. Saccadic system plasticity in humans. Ann. Neurol. 4, 313–318 (1978).
4. Kommerell, G., Olivier, D. & Theopold, H. Adaptive programming of phasic and tonic components in saccadic eye movements. Investigations of patients with abducens palsy. Invest. Ophthalmol. 15, 657–660 (1976).
5. Optican, L. M. & Robinson, D. A. Cerebellar-dependent adaptive control of primate saccadic system. J. Neurophysiol. 44, 1058–1076 (1980).
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