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蓝斑-前额皮质环路在啮齿类动物连续作业任务中注意的电生理学相关性。

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

机构信息

Neuroscience Program, Lafayette College, Easton, PA, 18042, USA.

Lieber Institute for Brain Development, Johns Hopkins Medical Campus, Baltimore, MD, 21205, USA.

出版信息

Neuropsychopharmacology. 2024 Feb;49(3):521-531. doi: 10.1038/s41386-023-01692-3. Epub 2023 Aug 10.

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.

摘要

持续注意力,即长时间专注于某项活动或刺激的能力,在许多精神疾病中都显著受损,而改善注意力不集中的需求仍然很大。连续性能测试(CPTs)是为了测量人类、非人类灵长类动物、大鼠和小鼠的持续注意力而开发的,在 CPT 表现过程中,类似的神经回路在物种之间被激活,支持它们在转化研究中用于识别新的治疗方法。在这里,我们在基于触摸屏的啮齿动物 CPT(rCPT)中确定了蓝斑核(LC)和前额叶皮层(PrL)注意力表现的电生理相关性,这两个相互连接的区域与注意力过程有关。我们使用病毒标记和分子技术证明,在 rCPT 期间,LC-PrL 投射中的神经活动被募集,并且这种募集随着认知需求的增加而增加。我们在 LC 和 PrL 内植入深度电极,用于 rCPT 训练期间的局部场电位(LFP)记录,并发现 rCPT 中正确反应时 PrL 的 delta 和 theta 功率增加,LC 的 delta 功率增加。我们还发现,在正确反应时,LC 在 theta 频率上领先于 PrL,而在错误反应时,PrL 在 gamma 频率上领先于 LC。这些发现可能代表转化生物标志物,可以用于筛选新型治疗药物以发现注意力药物。

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