Suppr超能文献

神经元集群的夹带节律活动作为时间间隔的感知记忆。

Entrained rhythmic activities of neuronal ensembles as perceptual memory of time interval.

作者信息

Sumbre Germán, Muto Akira, Baier Herwig, Poo Mu-ming

机构信息

Division of Neurobiology, Department of Molecular and Cell Biology, Helen Wills Neuroscience Institute, University of California, Berkeley, California 94720, USA.

出版信息

Nature. 2008 Nov 6;456(7218):102-6. doi: 10.1038/nature07351. Epub 2008 Oct 15.

Abstract

The ability to process temporal information is fundamental to sensory perception, cognitive processing and motor behaviour of all living organisms, from amoebae to humans. Neural circuit mechanisms based on neuronal and synaptic properties have been shown to process temporal information over the range of tens of microseconds to hundreds of milliseconds. How neural circuits process temporal information in the range of seconds to minutes is much less understood. Studies of working memory in monkeys and rats have shown that neurons in the prefrontal cortex, the parietal cortex and the thalamus exhibit ramping activities that linearly correlate with the lapse of time until the end of a specific time interval of several seconds that the animal is trained to memorize. Many organisms can also memorize the time interval of rhythmic sensory stimuli in the timescale of seconds and can coordinate motor behaviour accordingly, for example, by keeping the rhythm after exposure to the beat of music. Here we report a form of rhythmic activity among specific neuronal ensembles in the zebrafish optic tectum, which retains the memory of the time interval (in the order of seconds) of repetitive sensory stimuli for a duration of up to approximately 20 s. After repetitive visual conditioning stimulation (CS) of zebrafish larvae, we observed rhythmic post-CS activities among specific tectal neuronal ensembles, with a regular interval that closely matched the CS. Visuomotor behaviour of the zebrafish larvae also showed regular post-CS repetitions at the entrained time interval that correlated with rhythmic neuronal ensemble activities in the tectum. Thus, rhythmic activities among specific neuronal ensembles may act as an adjustable 'metronome' for time intervals in the order of seconds, and serve as a mechanism for the short-term perceptual memory of rhythmic sensory experience.

摘要

处理时间信息的能力对于从变形虫到人类的所有生物体的感官感知、认知处理和运动行为都至关重要。基于神经元和突触特性的神经回路机制已被证明能在数十微秒到数百毫秒的范围内处理时间信息。而神经回路如何在数秒到数分钟的范围内处理时间信息,人们了解得要少得多。对猴子和大鼠工作记忆的研究表明,前额叶皮层、顶叶皮层和丘脑的神经元会表现出斜坡状活动,这种活动与时间的流逝呈线性相关,直到动物被训练记忆的几秒特定时间间隔结束。许多生物体还能在数秒的时间尺度内记住有节奏的感官刺激的时间间隔,并能相应地协调运动行为,例如,在接触音乐节拍后保持节奏。在这里,我们报告了斑马鱼视顶盖中特定神经元集群之间的一种节律性活动形式,它能将重复感官刺激的时间间隔(秒级)记忆长达约20秒。在对斑马鱼幼体进行重复性视觉条件刺激(CS)后,我们观察到特定顶盖神经元集群在CS后出现节律性活动,其间隔规律且与CS紧密匹配。斑马鱼幼体的视觉运动行为在与顶盖中节律性神经元集群活动相关的夹带时间间隔也显示出CS后有规律的重复。因此,特定神经元集群之间的节律性活动可能作为秒级时间间隔的可调“节拍器”,并作为有节奏感官体验的短期感知记忆机制。

相似文献

4
Visuomotor transformations underlying hunting behavior in zebrafish.斑马鱼捕食行为背后的视觉运动转换
Curr Biol. 2015 Mar 30;25(7):831-46. doi: 10.1016/j.cub.2015.01.042. Epub 2015 Mar 5.
7
Neural Circuits Underlying Visually Evoked Escapes in Larval Zebrafish.斑马鱼幼体视觉诱发逃避行为的神经回路
Neuron. 2016 Feb 3;89(3):613-28. doi: 10.1016/j.neuron.2015.12.021. Epub 2016 Jan 21.

引用本文的文献

5
Influence of Recent Trial History on Interval Timing.近期试验史对间隔计时的影响。
Neurosci Bull. 2023 Apr;39(4):559-575. doi: 10.1007/s12264-022-00954-2. Epub 2022 Oct 8.
6
Neural Substrates and Models of Omission Responses and Predictive Processes.神经基础与忽略反应和预测过程的模型。
Front Neural Circuits. 2022 Feb 1;16:799581. doi: 10.3389/fncir.2022.799581. eCollection 2022.

本文引用的文献

2
Amoebae anticipate periodic events.变形虫能预测周期性事件。
Phys Rev Lett. 2008 Jan 11;100(1):018101. doi: 10.1103/PhysRevLett.100.018101. Epub 2008 Jan 3.
3
The biology of time across different scales.不同尺度下的时间生物学。
Nat Chem Biol. 2007 Oct;3(10):594-7. doi: 10.1038/nchembio1007-594.
6
Detection and prediction of periodic patterns by the retina.视网膜对周期性模式的检测与预测。
Nat Neurosci. 2007 May;10(5):552-4. doi: 10.1038/nn1887. Epub 2007 Apr 22.
7
A topographic map of recruitment in spinal cord.脊髓募集地形图。
Nature. 2007 Mar 1;446(7131):71-5. doi: 10.1038/nature05588.
8
Reverse correlation of rapid calcium signals in the zebrafish optic tectum in vivo.斑马鱼视顶盖体内快速钙信号的反向相关性。
J Neurosci Methods. 2006 Oct 30;157(2):230-7. doi: 10.1016/j.jneumeth.2006.04.021. Epub 2006 Jun 12.

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验