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小鼠背外侧膝状核中爆发式放电和紧张性放电的视觉反应特性

Visual response properties of burst and tonic firing in the mouse dorsal lateral geniculate nucleus.

作者信息

Grubb Matthew S, Thompson Ian D

机构信息

University Laboratory of Physiologyk, Parks Road, Oxford, OX1 3PT UK.

出版信息

J Neurophysiol. 2005 Jun;93(6):3224-47. doi: 10.1152/jn.00445.2004. Epub 2004 Dec 15.

Abstract

Thalamic relay cells fire action potentials in two modes: burst and tonic. Previous studies in cats have shown that these two modes are associated with significant differences in the visual information carried by spikes in the dorsal lateral geniculate nucleus (dLGN). Here we describe the visual response properties of burst and tonic firing in the mouse dLGN. Extracellular recordings of activity in single geniculate cells were performed under halothane and nitrous oxide anesthesia in vivo. After confirming that the criteria used to isolate burst spikes from these recordings identify firing events with properties described for burst firing in other species and preparations, we show that burst firing in the mouse dLGN occurs during visual stimulation. We then compare burst and tonic firing across a wide range of visual response characteristics. While the two firing modes do not differ with respect to spatial summation or spatial frequency tuning, they show significant differences in the temporal domain. Burst spikes are phase advanced relative to their tonic counterparts. Burst firing is also more rectified, possesses sharper temporal frequency tuning, and prefers lower temporal frequencies than tonic firing. In addition, contrast-response curves are more step-like for burst responses. Finally, we present analyses that describe the stimulus detection abilities and spike timing reliability of burst and tonic firing.

摘要

丘脑中继细胞以两种模式发放动作电位

爆发式和紧张式。先前对猫的研究表明,这两种模式与背侧外侧膝状体核(dLGN)中尖峰所携带的视觉信息的显著差异有关。在此,我们描述了小鼠dLGN中爆发式和紧张式放电的视觉反应特性。在体内氟烷和一氧化二氮麻醉下,对单个膝状体细胞的活动进行了细胞外记录。在确认从这些记录中分离爆发式尖峰所使用的标准能够识别具有其他物种和标本中所描述的爆发式放电特性的放电事件后,我们表明小鼠dLGN中的爆发式放电发生在视觉刺激期间。然后,我们在广泛的视觉反应特征范围内比较了爆发式和紧张式放电。虽然这两种放电模式在空间总和或空间频率调谐方面没有差异,但它们在时间域中表现出显著差异。爆发式尖峰相对于其紧张式对应物相位提前。爆发式放电也更整流,具有更尖锐的时间频率调谐,并且比紧张式放电更喜欢较低的时间频率。此外,爆发式反应的对比度 - 反应曲线更呈阶梯状。最后,我们给出了描述爆发式和紧张式放电的刺激检测能力和尖峰时间可靠性的分析。

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