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- W4362461588 abstract "Functional interactions between the prefrontal cortex and hippocampus, as revealed by strong oscillatory synchronization in the theta (6-11 Hz) frequency range, correlate with memory-guided decision-making. However, the degree to which this form of long-range synchronization influences memory-guided choice remains unknown. Here, we developed a brain machine interface that initiated trials on T-maze tasks based on the magnitude of prefrontal-hippocampal theta synchronization, then measured choice outcomes. Strong prefrontal-hippocampal theta synchrony was found to bias correct choices on both working memory dependent and cued-response tasks. Prefrontal-thalamic neural interactions increased with prefrontal-hippocampal synchrony and optogenetic activation of the ventral midline thalamus entrained prefrontal neural activity and prefrontal-hippocampal theta synchrony. Together, our results show that prefrontal-hippocampal theta synchronization leads to correct choices and strengthens prefrontal-thalamic dialogue. Our findings reveal new insights into the neural circuit dynamics underlying memory-guided choices and highlight a promising technique to potentiate cognitive processes or behavior via brain machine interfacing." @default.
- W4362461588 created "2023-04-05" @default.
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- W4362461588 date "2023-04-02" @default.
- W4362461588 modified "2023-09-29" @default.
- W4362461588 title "Using synchronized brain rhythms to bias memory-guided decisions" @default.
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- W4362461588 doi "https://doi.org/10.1101/2023.04.02.535279" @default.
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