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Kenneth A. Norman

Publications and source records attributed to Kenneth A. Norman.

2 recordsLinked to original sources

Lingering representations of stimulus history at encoding influence recall organization

Several prominent theories posit that information about recent experiences lingers in the brain and organizes memories for current experiences, by forming a temporal context that is linked to those memories at encoding. According to these theories, if the thoughts preceding an experience X resemble the thoughts preceding an experience Y, then X and Y should show an elevated probability of being recalled together. We tested this prediction by using multi-voxel pattern analysis (MVPA) of fMRI data to measure neural evidence for lingering processing of preceding stimuli. As predicted, memories encoded with similar lingering thoughts (about the category of preceding stimuli) were more likely to be recalled together, thereby showing that the \"fading embers\" of previous stimuli help to organize recall.

Neuroscience

A probability distribution over latent causes in the orbitofrontal cortex

The orbitofrontal cortex (OFC) has been implicated in both the representation of \"state\", in studies of reinforcement learning and decision making, and also in the representation of \"schemas\", in studies of episodic memory. Both of these cognitive constructs require a similar inference about the underlying situation or \"latent cause\" that generates our observations at any given time. The statistically optimal solution to this inference problem is to use Bayes rule to compute a posterior probability distribution over latent causes. To test whether such a posterior probability distribution is represented in the OFC, we tasked human participants with inferring a probability distribution over four possible latent causes, based on their observations. Using fMRI pattern similarity analyses, we found that BOLD activity in OFC is best explained as representing the (log-transformed) posterior distribution over latent causes. Furthermore, this pattern explained OFC activity better than other task-relevant alternatives such as the most probable latent cause, the most recent observation, or the uncertainty over latent causes.\n\nSIGNIFICANCE STATEMENTOur world is governed by hidden (latent) causes that we cannot observe, but which generate the observations that we do see. A range of high-level cognitive processes require inference of a probability distribution (or \"belief distribution\") over the possible latent causes that might be generating our current observations. This is true for reinforcement learning (where the latent cause comprises the true \"state\" of the task), and for episodic memory (where memories are believed to be organized by the inferred situation or \"schema\"). Using fMRI, we show that this belief distribution over latent causes is encoded in patterns of brain activity in the orbitofrontal cortex -- an area that has been separately implicated in the representations of both states and schemas.\n\nCONFLICT OF INTERESTThe authors declare no competing financial interests.

Neuroscience