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. 2023 Aug 29;42(8):112853.
doi: 10.1016/j.celrep.2023.112853. Epub 2023 Jul 22.

Learning-prolonged maintenance of stimulus information in CA1 and subiculum during trace fear conditioning

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Free article

Learning-prolonged maintenance of stimulus information in CA1 and subiculum during trace fear conditioning

Tao Bai et al. Cell Rep. .
Free article

Abstract

Temporal associative learning binds discontiguous conditional stimuli (CSs) and unconditional stimuli (USs), possibly by maintaining CS information in the hippocampus after its offset. Yet, how learning regulates such maintenance of CS information in hippocampal circuits remains largely unclear. Using the auditory trace fear conditioning (TFC) paradigm, we identify a projection from the CA1 to the subiculum critical for TFC. Deep-brain calcium imaging shows that the peak of trace activity in the CA1 and subiculum is extended toward the US and that the CS representation during the trace period is enhanced during learning. Interestingly, such plasticity is consolidated only in the CA1, not the subiculum, after training. Moreover, CA1 neurons, but not subiculum neurons, increasingly become active during CS-and-trace and shock periods, respectively, and correlate with CS-evoked fear retrieval afterward. These results indicate that learning dynamically enhances stimulus information maintenance in the CA1-subiculum circuit during learning while storing CS and US memories primarily in the CA1 area.

Keywords: CA1; CP: Neuroscience; hippocampus; miniscope Ca(2+) imaging; neural plasticity; optogenetics; short-term memory; stimulus information maintenance; subiculum; temporal associative learning; trace fear conditioning.

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Conflict of interest statement

Declaration of interests The authors declare no competing interests.

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