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猫上丘表层自发及视觉诱发神经元活动的振荡

Oscillations in Spontaneous and Visually Evoked Neuronal Activity in the Superficial Layers of the Cat's Superior Colliculus.

作者信息

Foik Andrzej T, Ghazaryan Anaida, Waleszczyk Wioletta J

机构信息

Department of Neurophysiology, Nencki Institute of Experimental Biology, Warsaw, Poland.

出版信息

Front Syst Neurosci. 2018 Dec 3;12:60. doi: 10.3389/fnsys.2018.00060. eCollection 2018.

Abstract

Oscillations are ubiquitous features of neuronal activity in sensory systems and are considered as a substrate for the integration of sensory information. Several studies have described oscillatory activity in the geniculate visual pathway, but little is known about this phenomenon in the extrageniculate visual pathway. We describe oscillations in evoked and background activity in the cat's superficial layers of the superior colliculus, a retinorecipient structure in the extrageniculate visual pathway. Extracellular single-unit activity was recorded during periods with and without visual stimulation under isoflurane anesthesia in the mixture of NO/O. Autocorrelation, FFT and renewal density analyses were used to detect and characterize oscillations in the neuronal activity. Oscillations were common in the background and stimulus-evoked activity. Frequency range of background oscillations spanned between 5 and 90 Hz. Oscillations in evoked activity were observed in about half of the cells and could appear in two forms -stimulus-phase-locked (10-100 Hz), and stimulus-phase-independent (8-100 Hz) oscillations. Stimulus-phase-independent and background oscillatory frequencies were very similar within activity of particular neurons suggesting that stimulus-phase-independent oscillations may be a form of enhanced "spontaneous" oscillations. Stimulus-phase-locked oscillations were present in responses to moving and flashing stimuli. In contrast to stimulus-phase-independent oscillations, the strength of stimulus-phase-locked oscillations was positively correlated with stimulus velocity and neuronal firing rate. Our results suggest that in the superficial layers of the superior colliculus stimulus-phase-independent oscillations may be generated by the same mechanism(s) that lie in the base of "spontaneous" oscillations, while stimulus-phase-locked oscillations may result from interactions within the intra-collicular network and/or from a phase reset of oscillations present in the background activity.

摘要

振荡是感觉系统中神经元活动普遍存在的特征,被认为是感觉信息整合的基础。多项研究描述了膝状视觉通路中的振荡活动,但对于膝状外视觉通路中的这一现象却知之甚少。我们描述了猫上丘表层诱发活动和背景活动中的振荡,上丘是膝状外视觉通路中的一个视网膜接收结构。在异氟烷麻醉下,于NO/O混合气体环境中,在有视觉刺激和无视觉刺激期间记录细胞外单单位活动。采用自相关、快速傅里叶变换(FFT)和更新密度分析来检测和表征神经元活动中的振荡。振荡在背景活动和刺激诱发活动中都很常见。背景振荡的频率范围在5至90赫兹之间。在大约一半的细胞中观察到诱发活动中的振荡,其可呈现两种形式——刺激相位锁定(10 - 100赫兹)和刺激相位非依赖(8 - 100赫兹)振荡。在特定神经元的活动中,刺激相位非依赖振荡频率和背景振荡频率非常相似,这表明刺激相位非依赖振荡可能是增强的“自发”振荡的一种形式。刺激相位锁定振荡出现在对移动和闪烁刺激的反应中。与刺激相位非依赖振荡不同,刺激相位锁定振荡的强度与刺激速度和神经元放电率呈正相关。我们的结果表明,在上丘表层,刺激相位非依赖振荡可能由与“自发”振荡相同的机制产生,而刺激相位锁定振荡可能源于丘内网络内的相互作用和/或背景活动中存在的振荡的相位重置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/109f/6287086/729ab9abb768/fnsys-12-00060-g0001.jpg

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