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感觉皮层中,自发性活动与外部诱发反应竞争。

Spontaneous activity competes with externally evoked responses in sensory cortex.

机构信息

Optophysiology Lab, Institute of Biology III, University of Freiburg, 79104 Freiburg, Germany.

Bernstein Center for Computational Neuroscience Freiburg, University of Freiburg, 79104 Freiburg, Germany.

出版信息

Proc Natl Acad Sci U S A. 2021 Jun 22;118(25). doi: 10.1073/pnas.2023286118.

Abstract

The interaction between spontaneous and externally evoked neuronal activity is fundamental for a functional brain. Increasing evidence suggests that bursts of high-power oscillations in the 15- to 30-Hz beta-band represent activation of internally generated events and mask perception of external cues. Yet demonstration of the effect of beta-power modulation on perception in real time is missing, and little is known about the underlying mechanism. Here, we used a closed-loop stimulus-intensity adjustment system based on online burst-occupancy analyses in rats involved in a forepaw vibrotactile detection task. We found that the masking influence of burst occupancy on perception can be counterbalanced in real time by adjusting the vibration amplitude. Offline analysis of firing rates (FRs) and local field potentials across cortical layers and frequency bands confirmed that beta-power in the somatosensory cortex anticorrelated with sensory evoked responses. Mechanistically, bursts in all bands were accompanied by transient synchronization of cell assemblies, but only beta-bursts were followed by a reduction of FR. Our closed loop approach reveals that spontaneous beta-bursts reflect a dynamic state that competes with external stimuli.

摘要

自发和外部诱发的神经元活动之间的相互作用是大脑功能的基础。越来越多的证据表明,15-30 赫兹β波段的高功率振荡爆发代表了内部产生事件的激活,并掩盖了对外界线索的感知。然而,实时观察β功率调制对感知的影响的证据尚缺乏,其潜在机制也知之甚少。在这里,我们使用了一种基于大鼠前爪振动触觉检测任务中在线爆发占用分析的闭环刺激强度调整系统。我们发现,通过调整振动幅度,可以实时平衡爆发占用对感知的掩蔽影响。在离线分析皮层各层和频带的放电率(FRs)和局部场电位时,我们证实了感觉皮层中的β功率与感觉诱发反应呈反相关。从机制上讲,所有波段的爆发都伴随着细胞集合的瞬时同步,但只有β爆发后 FR 会降低。我们的闭环方法表明,自发的β爆发反映了一种与外部刺激竞争的动态状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3ca/8237647/4adb22442c89/pnas.2023286118fig01.jpg

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