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Updated: May 23, 2026

Using Saccadometry with Deep Brain Stimulation to Study Normal and Pathological Brain Function
Published on: July 14, 2016
Lateral interactions in the superior colliculus produce saccade deviation in a neural field model
Zhiguo Wang1, Wouter Kruijne, Jan Theeuwes
1Vrije Universiteit, Vander Boechorststraat 1, Amsterdam, The Netherlands. z.wang@vu.nl
Abstract:
Contrary to human intuition, saccades (rapid eye movements) rarely go directly to their intended destination, but instead typically deviate from the optimal track. Previous studies have demonstrated that saccades may deviate toward or away from irrelevant distractors. Deviation toward distractors is generally explained with theories of "population coding", while deviation away from distractors is believed to be caused by top-down inhibition at the distractor location. With a Mexican-hat shaped lateral interaction kernel, we successfully simulated both deviation toward and away from distractors using a neural field model of the superior colliculus (SC). Our findings suggest that top-down inhibition of the SC is not necessary for the generation of saccade deviations.
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