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闭环听觉刺激方法调节大鼠睡眠慢波和运动学习表现。

Closed-loop auditory stimulation method to modulate sleep slow waves and motor learning performance in rats.

机构信息

Department of Neurology, University Hospital Zurich, University of Zurich, Zurich, Switzerland.

University Center of Competence Sleep & Health Zurich (CRPP), University of Zurich, Zurich, Switzerland.

出版信息

Elife. 2021 Oct 6;10:e68043. doi: 10.7554/eLife.68043.

Abstract

Slow waves and cognitive output have been modulated in humans by phase-targeted auditory stimulation. However, to advance its technical development and further our understanding, implementation of the method in animal models is indispensable. Here, we report the successful employment of slow waves' phase-targeted closed-loop auditory stimulation (CLAS) in rats. To validate this new tool both conceptually and functionally, we tested the effects of up- and down-phase CLAS on proportions and spectral characteristics of sleep, and on learning performance in the single-pellet reaching task, respectively. Without affecting 24 hr sleep-wake behavior, CLAS specifically altered delta (slow waves) and sigma (sleep spindles) power persistently over chronic periods of stimulation. While up-phase CLAS does not elicit a significant change in behavioral performance, down-phase CLAS exerted a detrimental effect on overall engagement and success rate in the behavioral test. Overall CLAS-dependent spectral changes were positively correlated with learning performance. Altogether, our results provide proof-of-principle evidence that phase-targeted CLAS of slow waves in rodents is efficient, safe, and stable over chronic experimental periods, enabling the use of this high-specificity tool for basic and preclinical translational sleep research.

摘要

慢波和认知输出已通过相位靶向听觉刺激在人类中进行了调节。然而,为了推进其技术发展并加深我们的理解,在动物模型中实施该方法是必不可少的。在这里,我们报告了成功地将慢波的相位靶向闭环听觉刺激(CLAS)应用于大鼠。为了在概念和功能上验证这一新工具,我们分别测试了上相和下相 CLAS 对睡眠比例和频谱特征以及单颗粒接近任务学习性能的影响。CLAS 不会影响 24 小时的睡眠-觉醒行为,而是在慢性刺激期间持续地改变慢波和睡眠纺锤波的功率。而上相 CLAS 不会引起行为表现的显著变化,而下相 CLAS 则会对行为测试中的整体参与度和成功率产生不利影响。总体而言,CLAS 依赖性的频谱变化与学习表现呈正相关。总的来说,我们的结果提供了初步的证据,证明在慢性实验期间,啮齿动物中靶向慢波的相位 CLAS 是高效、安全和稳定的,这使得该高特异性工具能够用于基础和临床前睡眠研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f44/8530509/84c63710a9bf/elife-68043-fig1.jpg

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