Title :
A neural network model of saccade generation using distributed dynamic feedback to superior colliculus
Author :
Arai, K. ; Keller, E.L. ; Edelman, J.A.
Author_Institution :
California Univ., Berkeley, CA, USA
Abstract :
In this paper we present a new spatio-temporal neural network model of saccade generation using distributed dynamic feedback to the superior colliculus. Although the saccadic eye movement system has been widely studied little is known about what part of the brain calculates motor error, the difference between the desired eye position and the actual eye position, that accurately controls saccade eye movements. In the model we place the superior colliculus inside a brainstem feedback loop in order to replicate collicular discharge profiles observed neurophysiologically. In simulations the model succeeds in making accurate saccadic eye movements of a variety of sizes while producing realistic spatio-temporal patterns of collicular discharge.
Keywords :
bioelectric phenomena; eye; neural nets; neurophysiology; physiological models; brainstem feedback loop; collicular discharge profiles; distributed dynamic feedback; motor error; neurophysiology; saccade generation; saccadic eye movement; spatio-temporal neural network model; superior colliculus; Biological neural networks; Error correction; Fault location; Neural networks; Neurofeedback; Neurons; Retina; Signal generators;
Conference_Titel :
Neural Networks, 1993. IJCNN '93-Nagoya. Proceedings of 1993 International Joint Conference on
Print_ISBN :
0-7803-1421-2
DOI :
10.1109/IJCNN.1993.713857