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Electrophysiological correlates of attention in the locus coeruleus-prelimbic cortex circuit during the rodent continuous performance test. | LitMetric

AI Article Synopsis

  • Sustained attention is often impaired in psychiatric disorders, and there’s a need for better treatments, making continuous performance tests (CPTs) important for studying attention across different species.
  • Researchers identified important brain activity related to attention in a rodent touchscreen CPT, focusing on the locus coeruleus (LC) and prelimbic cortex (PrL), which are connected and crucial for attentional processes.
  • They recorded brain activity, finding that PrL and LC showed different patterns of neural synchronization during correct and incorrect task responses, highlighting potential biomarkers for developing new attention-related treatments.

Article Abstract

Sustained attention, the ability to focus on an activity or stimulus over time, is significantly impaired in many psychiatric disorders, and there remains a major unmet need in treating impaired attention. Continuous performance tests (CPTs) were developed to measure sustained attention in humans, non-human primates, rats, and mice, and similar neural circuits are engaged across species during CPT performance, supporting their use in translational studies to identify novel therapeutics. Here, we identified electrophysiological correlates of attentional performance in a touchscreen-based rodent CPT (rCPT) in the locus coeruleus (LC) and prelimbic cortex (PrL), two inter-connected regions that are implicated in attentional processes. We used viral labeling and molecular techniques to demonstrate that neural activity is recruited in LC-PrL projections during the rCPT, and that this recruitment increases with cognitive demand. We implanted male mice with depth electrodes within the LC and PrL for local field potential (LFP) recordings during rCPT training, and identified an increase in PrL delta and theta power, and an increase in LC delta power during correct responses in the rCPT. We also found that the LC leads the PrL in theta frequencies during correct responses while the PrL leads the LC in gamma frequencies during incorrect responses. These findings may represent translational biomarkers that can be used to screen novel therapeutics for drug discovery in attention.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10789747PMC
http://dx.doi.org/10.1038/s41386-023-01692-3DOI Listing

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