Skirball Institute for Biomolecular Medicine, New York University School of Medicine, New York, NY, USA.
Neuroscience Institute, New York University School of Medicine, New York, NY, USA.
Nat Neurosci. 2024 Nov;27(11):2152-2166. doi: 10.1038/s41593-024-01767-4. Epub 2024 Sep 16.
Perception can be refined by experience, up to certain limits. It is unclear whether perceptual limits are absolute or could be partially overcome via enhanced neuromodulation and/or plasticity. Recent studies suggest that peripheral nerve stimulation, specifically vagus nerve stimulation (VNS), can alter neural activity and augment experience-dependent plasticity, although little is known about central mechanisms recruited by VNS. Here we developed an auditory discrimination task for mice implanted with a VNS electrode. VNS applied during behavior gradually improved discrimination abilities beyond the level achieved by training alone. Two-photon imaging revealed VNS induced changes to auditory cortical responses and activated cortically projecting cholinergic axons. Anatomical and optogenetic experiments indicated that VNS can enhance task performance through activation of the central cholinergic system. These results highlight the importance of cholinergic modulation for the efficacy of VNS and may contribute to further refinement of VNS methodology for clinical conditions.
感知可以通过经验来提高,达到一定的极限。目前还不清楚感知极限是绝对的,还是可以通过增强神经调制和/或可塑性来部分克服。最近的研究表明,外周神经刺激,特别是迷走神经刺激(VNS),可以改变神经活动并增强经验依赖性可塑性,尽管人们对 VNS 募集的中枢机制知之甚少。在这里,我们为植入 VNS 电极的小鼠开发了一种听觉辨别任务。在行为过程中施加 VNS,逐渐提高了辨别能力,超过了仅通过训练达到的水平。双光子成像显示 VNS 诱导听觉皮层反应的变化,并激活皮质投射的胆碱能轴突。解剖学和光遗传学实验表明,VNS 可以通过激活中枢胆碱能系统来增强任务表现。这些结果强调了胆碱能调制对 VNS 疗效的重要性,并可能有助于进一步完善 VNS 治疗临床疾病的方法。