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PNAS Plus: Cortical cholinergic signaling controls the detection of cues

机译:PNAS Plus:皮质胆碱能信号控制线索的检测

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摘要

The cortical cholinergic input system has been described as a neuromodulator system that influences broadly defined behavioral and brain states. The discovery of phasic, trial-based increases in extracellular choline (transients), resulting from the hydrolysis of newly released acetylcholine (ACh), in the cortex of animals reporting the presence of cues suggests that ACh may have a more specialized role in cognitive processes. Here we expressed channelrhodopsin or halorhodopsin in basal forebrain cholinergic neurons of mice with optic fibers directed into this region and prefrontal cortex. Cholinergic transients, evoked in accordance with photostimulation parameters determined in vivo, were generated in mice performing a task necessitating the reporting of cue and noncue events. Generating cholinergic transients in conjunction with cues enhanced cue detection rates. Moreover, generating transients in noncued trials, where cholinergic transients normally are not observed, increased the number of invalid claims for cues. Enhancing hits and generating false alarms both scaled with stimulation intensity. Suppression of endogenous cholinergic activity during cued trials reduced hit rates. Cholinergic transients may be essential for synchronizing cortical neuronal output driven by salient cues and executing cue-guided responses.
机译:皮质胆碱能输入系统已被描述为一种影响广泛定义的行为和大脑状态的神经调节系统。在动物皮层中发现的新的乙酰胆碱(ACh)水解引起的细胞外胆碱(瞬态)的阶段性增加的发现,提示提示存在提示表明,ACh在认知过程中可能起更专门的作用。在这里,我们在小鼠的基底前脑胆碱能神经元中表达了通道视紫红质或卤代视紫红质,这些纤维指向该区域和前额叶皮层。根据体内确定的光刺激参数诱发的胆碱能瞬变是在执行需要报告提示和非提示事件的任务的小鼠中产生的。与提示一起生成胆碱能瞬变可提高提示检测率。此外,在通常未观察到胆碱能瞬变的无提示试验中产生瞬变,增加了无效提示的数量。增强击中次数和生成错误警报都与刺激强度成比例。在提示试验中抑制内源胆碱能活性可降低命中率。胆碱能瞬变可能对同步由显性线索驱动的皮层神经元输出和执行由提示引导的反应至关重要。

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