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行为猫视觉注视范式中尾状核神经元的活动

Activity of Caudate Nucleus Neurons in a Visual Fixation Paradigm in Behaving Cats.

作者信息

Nagypál Tamás, Gombkötő Péter, Barkóczi Balázs, Benedek György, Nagy Attila

机构信息

Department of Physiology, Faculty of Medicine, University of Szeged, Szeged, Hungary.

Center for Molecular and Behavioral Neuroscience Rutgers University, Newark, New Jersey, United States of America.

出版信息

PLoS One. 2015 Nov 6;10(11):e0142526. doi: 10.1371/journal.pone.0142526. eCollection 2015.

Abstract

Beside its motor functions, the caudate nucleus (CN), the main input structure of the basal ganglia, is also sensitive to various sensory modalities. The goal of the present study was to investigate the effects of visual stimulation on the CN by using a behaving, head-restrained, eye movement-controlled feline model developed recently for this purpose. Extracellular multielectrode recordings were made from the CN of two cats in a visual fixation paradigm applying static and dynamic stimuli. The recorded neurons were classified in three groups according to their electrophysiological properties: phasically active (PAN), tonically active (TAN) and high-firing (HFN) neurons. The response characteristics were investigated according to this classification. The PAN and TAN neurons were sensitive primarily to static stimuli, while the HFN neurons responded primarily to changes in the visual environment i.e. to optic flow and the offset of the stimuli. The HFNs were the most sensitive to visual stimulation; their responses were stronger than those of the PANs and TANs. The majority of the recorded units were insensitive to the direction of the optic flow, regardless of group, but a small number of direction-sensitive neurons were also found. Our results demonstrate that both the static and the dynamic components of the visual information are represented in the CN. Furthermore, these results provide the first piece of evidence on optic flow processing in the CN, which, in more general terms, indicates the possible role of this structure in dynamic visual information processing.

摘要

除了其运动功能外,基底神经节的主要输入结构尾状核(CN)也对各种感觉模态敏感。本研究的目的是通过使用最近为此目的开发的行为受限、头部固定、眼动可控的猫模型,研究视觉刺激对尾状核的影响。在视觉注视范式中,对两只猫的尾状核进行细胞外多电极记录,应用静态和动态刺激。根据记录神经元的电生理特性将其分为三组:相位活跃(PAN)神经元、紧张性活跃(TAN)神经元和高频放电(HFN)神经元。根据这种分类研究其反应特性。PAN和TAN神经元主要对静态刺激敏感,而HFN神经元主要对视觉环境的变化即光流和刺激的偏移做出反应。HFN对视觉刺激最敏感;它们的反应比PAN和TAN的反应更强。无论属于哪一组,大多数记录单元对光流方向不敏感,但也发现了少数方向敏感神经元。我们的结果表明,视觉信息的静态和动态成分在尾状核中均有体现。此外,这些结果提供了尾状核对光流处理的首个证据,更一般地说,这表明该结构在动态视觉信息处理中可能发挥的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f45/4636356/6503619d83f5/pone.0142526.g001.jpg

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