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Taub, A. H.

Publications and source records attributed to Taub, A. H..

2 recordsLinked to original sources

Long time-scales in primate amygdala neurons support aversive learning

Associative learning forms when there is temporal relationship between a stimulus and a reinforcer, yet the inter-trial-interval (ITI), which is usually much longer than the stimulus-reinforcer-interval, contributes to learning-rate and memory strength. The neural mechanisms that enable maintenance of time between trials remain unknown, and it is unclear if the amygdala can support time scales at the order of dozens of seconds. We show that the ITI indeed modulates rate and strength of aversive-learning, and that single-units in the primate amygdala and dorsal-anterior-cingulate-cortex signal confined periods within the ITI, strengthen this coding during acquisition of aversive-associations, and diminish during extinction. Additionally, pairs of amygdala-cingulate neurons synchronize during specific periods suggesting a shared circuit that maintains the long temporal gap. The results extend the known roles of this circuit and suggest a mechanism that maintains trial-structure and temporal-contingencies for learning. It further suggests a novel model for maladaptive behaviors.

neuroscience

Oscillations synchronize amygdala-to-prefrontal primate circuits during aversive learning

The contribution of oscillatory synchrony in the primate amygdala-prefrontal pathway to aversive learning remains unknown. We found increased power and phase synchrony in the theta range during aversive conditioning. The synchrony was linked to single-unit spiking and exhibited specific directionality between input and output measures in each region. Although it was correlated with the development of conditioned responses, it declined once the association stabilized. The results suggest that amygdala spikes aid to synchronize ACC activity and transfer error-signal information to support memory formation.\n\nHighlightsO_LITone-odor conditioning induces theta phase-reset in primate amygdala and dACC\nC_LIO_LIA directional phase-locking develops between amygdala spikes and dACC Theta\nC_LIO_LIInformation transfer from Amygdala to dACC decreases once memory stabilizes\nC_LI

neuroscience