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J Neurophysiol 90: 1392-1407, 2003. First published May 21, 2003; doi:10.1152/jn.01049.2002
0022-3077/03 $5.00
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A Comparison of Macaque Behavior and Superior Colliculus Neuronal Activity to Predictions From Models of Two-Choice Decisions

Roger Ratcliff, Anil Cherian and Mark Segraves

Departments of Psychology and Neurobiology and Physiology, Northwestern University, Evanston, Illinois 60208

Submitted 20 November 2002; accepted in final form 19 May 2003

Recently, models in psychology have been shown capable of accounting for the full range of behavioral data from simple two-choice decision tasks: mean reaction times for correct and error responses, accuracy, and the reaction time distributions for correct and error responses. At the same time, recent data from neural recordings have allowed investigation of the neural systems that implement such decisions. In the experiment presented here, neural recordings were obtained from superior colliculus prelude/buildup cells in two monkeys while they performed a two-choice task that has been used in humans for testing psychological models of the decision process. The best-developed psychological model, the diffusion model, and a competing model, the Poisson counter model, were explicitly fit to the behavioral data. The pattern of activity shown in the prelude/buildup cells, including the point at which response choices were discriminated, was matched by the evidence accumulation process predicted from the diffusion model using the parameters from the fits to the behavioral data but not by the Poisson counter model. These results suggest that prelude/buildup cells in the superior colliculus, or cells in circuits in which the superior colliculus cells participate, implement a diffusion decision process or a variant of the diffusion process.


Address for reprint requests: R. Ratcliff, Dept. of Psychology, Ohio State University, 1827 Neil Ave., Columbus, OH 43210.




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