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Vivar-Lazo, M.

Publications and source records attributed to Vivar-Lazo, M..

2 recordsLinked to original sources

Macaque Area LIP Reflects Confidence-Dependent Changes in Decision Policy

The process of forming a decision gives rise to an estimate of its quality or likelihood of success. This graded sense of confidence is important for guiding subsequent decisions, but a neural mechanism linking subjective confidence to formation of the next decision has not been identified. We trained rhesus monkeys to report a perceptual choice and simultaneous confidence judgment in a reaction-time (RT) motion discrimination task. Monkeys were more likely to repeat a rewarded choice when they reported low confidence on the previous trial, and showed greater changes in RT after a surprising outcome (low-confidence correct or high-confidence error). Neural activity in the lateral intraparietal area (LIP) encoded the previous trials choice and confidence more strongly after a low-confidence correct trial, and the strength of history encoding was correlated with a trial-by-trial estimate of choice bias. Ramping dynamics of the decoded decision variable also depended systematically on the conjunction of confidence and reward on the previous trial, in a manner that reflected individual differences between animals. The findings suggest that LIP not only reflects the formation of the current decision but could participate in confidence-guided learning via adjustments of the subsequent decision process.

neuroscience↗

Neural basis of concurrent deliberation toward a choice and degree of confidence

Decision confidence plays a key role in flexible behavior and (meta)cognition, but its underlying neural mechanisms remain elusive. To uncover the latent dynamics of confidence formation at the level of single neurons and population activity, we trained nonhuman primates to report choice and confidence with a single eye movement on every trial. Monkey behavior was well fit by a bounded accumulator model instantiating parallel processing of evidence, rejecting a serial model in which the choice is resolved first followed by post-decision accumulation for confidence. Neurons in area LIP reflected concurrent accumulation, showing covariation of choice and confidence signals across the population, and within-trial dynamics consistent with parallel updating at near-zero time lag. The results demonstrate that the primate brain can process a single stream of evidence in service of two computational goals simultaneously--a categorical decision and associated level of confidence--and illuminate a candidate neural substrate for this capacity.

neuroscience↗