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Updated: Jun 26, 2026

Ocular Kinematics Measured by In Vitro Stimulation of the Cranial Nerves in the Turtle
Published on: June 2, 2018
Synaptic adaptation and sustained generation of waves in a model of turtle visual cortex
Zachary V Freudenburg1, Bijoy K Ghosh, Philip S Ulinski
1Department of Computer Science and Engineering, Washington University, St. Louis, MO 63130, USA. zvf1@cec.wustl.edu
Abstract:
Both single and repeated visual stimuli produce waves of activity in the visual cortex of freshwater turtles. Large-scale, biophysically realistic models of the visual cortex capture the basic features of the waves produced by single stimuli. However, these models do not respond to repetitive stimuli due to the presence of a long-lasting hyperpolarization that follows the initial wave. This paper modifies the large-scale model so that it responds to repetitive stimuli by incorporating Hebbian and anti-Hebbian learning rules in synapses in the model. The resulting adaptive model responds to repetitive stimuli with repetitive waves. However, repeated presentation of a stimulus to a restricted region of visual space produces a habituation in the model in the same way it does in the real cortex.
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