From Fast Oscillations to Circadian Rhythms: Coupling at Multiscale Frequency Bands in the Rodent Subcortical Visual System.

From Fast Oscillations to Circadian Rhythms: Coupling at Multiscale Frequency Bands in the Rodent Subcortical Visual System.
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DOI:
10.3389/fphys.2021.738229
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发表时间:
2021
影响因子:
4
通讯作者:
Myung J
Myung J
中科院分区:
医学2区
文献类型:
--
作者:
Chrobok L;Belle MDC;Myung J

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皮质下视觉系统(SVS)是一种独特的大脑结构集合,位于丘脑、下丘脑和中脑。SVS接收来自视网膜神经节细胞的环境光输入,并将该信号与内部平衡需求相结合,以影响生理。在这个过程中,许多振荡频段合并,其中一些起源于视网膜,而另一些则内在地产生于SVS。总而言之,这些节奏被昼夜循环进一步调节。这些不同的频带(从昼夜节律到次慢和伽马振荡)的多重作用使SVS成为研究多尺度频率耦合的一个有趣的系统。我们回顾了SVS的功能组织,以及由其神经元产生和处理的各种频率。我们提出了一种观点,即这些不同的频段如何相互耦合,以同步SVS的活动,从而控制生理和行为。
The subcortical visual system (SVS) is a unique collection of brain structures localised in the thalamus, hypothalamus and midbrain. The SVS receives ambient light inputs from retinal ganglion cells and integrates this signal with internal homeostatic demands to influence physiology. During this processing, a multitude of oscillatory frequency bands coalesces, with some originating from the retinas, while others are intrinsically generated in the SVS. Collectively, these rhythms are further modulated by the day and night cycle. The multiplexing of these diverse frequency bands (from circadian to infra-slow and gamma oscillations) makes the SVS an interesting system to study coupling at multiscale frequencies. We review the functional organisation of the SVS, and the various frequencies generated and processed by its neurons. We propose a perspective on how these different frequency bands couple with one another to synchronise the activity of the SVS to control physiology and behaviour.
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