首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Very slow potential oscillations in locus coeruleus and dorsal raphe nucleus under different illumination in freely moving rats.
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Very slow potential oscillations in locus coeruleus and dorsal raphe nucleus under different illumination in freely moving rats.

机译:自由移动大鼠在不同光照下蓝藻和背缝核的潜在振荡非常缓慢。

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摘要

Recent findings have revealed very slow (<0.5 Hz) oscillatory phenomena in the structures of the brain visual system. It has been proposed that very slow brain potentials in an extremely slow domain, less than 0.1 Hz, recorded from the lateral geniculate complex and primary visual cortex are associated with periodic influences originating from the locus coeruleus and dorsal raphe nucleus. The present study was performed to test the hypothesis that extremely slow brain potential oscillatory patterns in the locus coeruleus and dorsal raphe nucleus during several types of visual stimulation--light exposure, darkness, and photostimulation--are similar to those in the primary visual cortex and lateral geniculate complex under the same conditions of illumination. The results support this hypothesis. Specifically, spectral patterns of multisecond oscillations in the range of 0.02-0.04 Hz and fluctuations in the domain of minutes (below 0.002 Hz) were present in both the locus coeruleus and dorsal raphe nucleus and were similar to those found in the primary visual cortex and lateral geniculate complex. Additionally, we detected significant increases in the power spectra of multisecond oscillations in both nuclei in response to photostimulation (P<0.05). Our tentative conclusion is that extremely slow potentials in the locus coeruleus and dorsal raphe nucleus contribute to the regulation of extremely slow activity in the brain visual system.
机译:最近的发现表明,大脑视觉系统的结构中的振荡现象非常缓慢(<0.5 Hz)。已经提出,从外侧膝状复合体和初级视皮层记录的在极慢域中的非常慢的脑电势(小于0.1 Hz)与源自蓝斑和背and核的周期性影响有关。进行本研究是为了检验以下假设:在几种类型的视觉刺激(光照,黑暗和光刺激)过程中,蓝斑和背脊核的极慢脑电势振荡模式类似于初级视觉皮层相同照度下的外侧膝状复合体。结果支持该假设。具体而言,在蓝斑蓝核和背ra核中均存在0.02-0.04 Hz范围内的多秒振荡和分钟范围内的波动(低于0.002 Hz),并且与初级视皮层和后视核相似。外侧膝状复合体。此外,我们发现响应光刺激,两个原子核中多秒振荡的功率谱均显着增加(P <0.05)。我们的初步结论是,蓝斑和背脊核中极慢的电位有助于调节大脑视觉系统中极慢的活动。

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