Literature DB >> 31405927

Dopamine Enhances Item Novelty Detection via Hippocampal and Associative Recall via Left Lateral Prefrontal Cortex Mechanisms.

Mareike Clos1, Nico Bunzeck2,3, Tobias Sommer2.   

Abstract

The involvement of fronto-striatal circuits in item and associative memory retrieval as well as in the stabilization of memories by retrieval practice suggests that both retrieval and re-encoding of stored memories might rely on dopaminergic mechanisms in humans. We tested these hypotheses in a placebo-controlled pharmacological fMRI study using 2 mg of the D2 antagonist haloperidol administered acutely before a cued associative recall task of previously encoded picture-word pairs in 53 healthy humans of both sexes. The cued associative recall was moreover repeated 3 d later outside the scanner without pharmacological intervention. Dopaminergic modulation significantly improved associative recall performance and recognition accuracy of verbal items. Moreover, we observed a significant dopamine effect on re-encoding in terms of increased specificity of associative memories from the first to the second cued associative recall. Better association memory under haloperidol was linked with higher activity in the left lateral prefrontal cortex and right parietal cortex, suggesting that dopamine facilitates associative retrieval through increased recruitment of frontoparietal monitoring processes. In contrast, improved recognition of verbal items under haloperidol was reflected by enhanced novelty detection in the hippocampus and increased activity in saliency networks. Together, these results show distinct but concomitant positive effects of dopamine on associative recall and item recognition and suggest that the specificity of associative recall through re-encoding mechanisms is likewise augmented by dopamine.SIGNIFICANCE STATEMENT Although the neurotransmitter dopamine has been linked with learning and memory for a long time, dopaminergic effects on item recognition in humans were demonstrated only recently. The involvement of fronto-striatal monitoring processes in association retrieval suggests that associative memory might be particularly affected by dopamine. Moreover, fronto-striatal dopaminergic signals have been hypothesized to determine the updating and re-encoding of previously retrieved memories. We here demonstrate clear facilitative effects of dopamine on associative recall and item recognition mediated by prefrontal and hippocampal mechanisms respectively. Additionally, effects on re-encoding were reflected by increased specificity of associative memories. These results augment our understanding of dopaminergic processes in episodic memory retrieval and offer new perspectives on memory impairments in dopamine-related disorders and their treatment.
Copyright © 2019 the authors.

Entities:  

Keywords:  associative memory; episodic memory; fMRI; haloperidol; memory retrieval; re-encoding

Mesh:

Substances:

Year:  2019        PMID: 31405927      PMCID: PMC6774414          DOI: 10.1523/JNEUROSCI.0495-19.2019

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  80 in total

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Review 7.  The hippocampal-VTA loop: controlling the entry of information into long-term memory.

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8.  Detection of dopaminergic neurotransmitter activity using pharmacologic MRI: correlation with PET, microdialysis, and behavioral data.

Authors:  Y C Chen; W R Galpern; A L Brownell; R T Matthews; M Bogdanov; O Isacson; J R Keltner; M F Beal; B R Rosen; B G Jenkins
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9.  Neural correlates of retrieval-based memory enhancement: an fMRI study of the testing effect.

Authors:  Erik A Wing; Elizabeth J Marsh; Roberto Cabeza
Journal:  Neuropsychologia       Date:  2013-04-19       Impact factor: 3.139

Review 10.  Prefrontal dopamine in associative learning and memory.

Authors:  M V Puig; E G Antzoulatos; E K Miller
Journal:  Neuroscience       Date:  2014-09-18       Impact factor: 3.590

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4.  Bidirectional Regulation of Hippocampal Synaptic Plasticity and Modulation of Cumulative Spatial Memory by Dopamine D2-Like Receptors.

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5.  Functional imaging analyses reveal prototype and exemplar representations in a perceptual single-category task.

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