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金鱼视网膜中相邻神经节细胞放电时的常见噪声。

Common noise in the firing of neighbouring ganglion cells in goldfish retina.

作者信息

Ginsburg K S, Johnsen J A, Levine M W

出版信息

J Physiol. 1984 Jun;351:433-50. doi: 10.1113/jphysiol.1984.sp015254.

Abstract

Pairs of goldfish retinal ganglion cells with overlapping receptive fields were recorded during stimulation with repeated light flashes. Cross-correlation histograms for 'maintained' discharge, 'on' responses, and 'off' responses were computed with a correction for the systematic responses to the stimuli; cross-covariances were derived from these. If stimulus-induced signals and noise combine linearly, then the cross-covariances are independent of differences in mean firing rate. Cross-covariances of pairs of cells with the same response polarity displayed a positive peak near zero lag; pairs with complementary responses showed a negative peak. 'On-off' cells could generally be classified as on-like or off-like, based on the plateau of firing during a prolonged flash and the relative magnitudes of the on and off peak responses; the cross-covariances of these cells were as one would predict if they were pure on- or off-centre neurones. The cross-covariances derived from the on period usually differed in magnitude from those derived in the dark (either maintained or off response). In general, cross-covariances for off responses were nearly identical to those for the maintained discharges of the same pair, although the mean rates at off were usually quite different from the maintained. The change in magnitude of the cross-covariances from on responses therefore appears to be a non-linear effect of light, and not of the changes in firing rate induced by the light. Other features of the cross-covariances were not affected by stimulation. The general shapes remained fairly constant, and the lags at which the peaks occurred were not consistently affected. We estimated the variance of the firing rate of each unit in three ways, and used two methods of portioning the variance implied by the cross-covariances; from these estimates, we obtained an upper bound for the proportion of the variance of firing of a cell which is due to the common noise that affects both members of a pair. We found that the common influence accounts for less than 20% of the total variance. During stimulation, both the magnitude of the cross-covariance and the variance of the rates change; however, the percentage of total variance contributed by the common noise source is constant. We conclude that light has the effect of changing the gain of the pathway after the introduction of both the common and unshared (private) noise sources but before the ganglion cell.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

在重复闪光刺激期间,对具有重叠感受野的金鱼视网膜神经节细胞对进行了记录。针对“持续”放电、“开”反应和“关”反应计算了互相关直方图,并对刺激的系统反应进行了校正;互协方差由此得出。如果刺激诱导的信号和噪声线性组合,那么互协方差与平均放电率的差异无关。具有相同反应极性的细胞对的互协方差在零延迟附近显示出一个正峰;具有互补反应的细胞对则显示出一个负峰。基于长时间闪光期间的放电平台以及开峰和关峰反应的相对幅度,“开 - 关”细胞通常可分类为类似开或类似关的细胞;如果这些细胞是纯中心开或中心关神经元,那么它们的互协方差正如人们所预测的那样。从开期得出的互协方差在大小上通常与在黑暗中(持续放电或关反应)得出的互协方差不同。一般来说,关反应的互协方差与同一细胞对的持续放电的互协方差几乎相同,尽管关期的平均放电率通常与持续放电时大不相同。因此,开反应的互协方差大小的变化似乎是光的非线性效应,而不是光引起的放电率变化的效应。互协方差的其他特征不受刺激影响。总体形状保持相当恒定,并且峰值出现的延迟也没有受到一致的影响。我们用三种方法估计了每个单元放电率的方差,并使用两种方法划分互协方差所隐含的方差;从这些估计中,我们获得了一个细胞放电方差中归因于影响细胞对两个成员的共同噪声的比例的上限。我们发现共同影响占总方差的不到20%。在刺激期间,互协方差的大小和放电率的方差都会变化;然而,由共同噪声源贡献的总方差的百分比是恒定的。我们得出结论,在引入共同和非共享(私有)噪声源之后但在神经节细胞之前,光具有改变通路增益的作用。(摘要截于400字)

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本文引用的文献

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Electric responses from the isolated retinas of fishes.鱼类离体视网膜的电反应。
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