Warzecha A K, Kretzberg J, Egelhaaf M
Lehrstuhl für Neurobiologie, Fakultät für Biologie, Universität Bielefeld, D-33501 Bielefeld, Germany.
J Neurosci. 2000 Dec 1;20(23):8886-96. doi: 10.1523/JNEUROSCI.20-23-08886.2000.
The variability of responses of sensory neurons constrains how reliably animals can respond to stimuli in the outside world. We show for a motion-sensitive visual interneuron of the fly that the variability of spike trains depends on the properties of the motion stimulus, although differently for different stimulus parameters. (1) The spike count variances of responses to constant and to dynamic stimuli lie in the same range. (2) With increasing stimulus size, the variance may slightly decrease. (3) Increasing pattern contrast reduces the variance considerably. For all stimulus conditions, the spike count variance is much smaller than the mean spike count and does not depend much on the mean activity apart from very low activities. Using a model of spike generation, we analyzed how the spike count variance depends on the membrane potential noise and the deterministic membrane potential fluctuations at the spike initiation zone of the neuron. In a physiologically plausible range, the variance is affected only weakly by changes in the dynamics or the amplitude of the deterministic membrane potential fluctuations. In contrast, the amplitude and dynamics of the membrane potential noise strongly influence the spike count variance. The membrane potential noise underlying the variability of the spike responses in the motion-sensitive neuron is concluded to be affected considerably by the contrast of the stimulus but by neither its dynamics nor its size.
感觉神经元反应的变异性限制了动物对外界刺激做出可靠反应的程度。我们发现,对于果蝇的一种对运动敏感的视觉中间神经元,脉冲序列的变异性取决于运动刺激的特性,不过不同刺激参数的情况有所不同。(1)对恒定刺激和动态刺激的反应,其脉冲计数方差处于同一范围。(2)随着刺激大小增加,方差可能略有下降。(3)增加图案对比度会显著降低方差。在所有刺激条件下,脉冲计数方差远小于平均脉冲计数,并且除了极低活动水平外,不太依赖于平均活动。使用一个脉冲生成模型,我们分析了脉冲计数方差如何取决于神经元脉冲起始区的膜电位噪声和确定性膜电位波动。在生理上合理的范围内,方差仅受确定性膜电位波动的动力学或幅度变化的微弱影响。相比之下,膜电位噪声的幅度和动力学强烈影响脉冲计数方差。可以得出结论,运动敏感神经元中脉冲反应变异性背后的膜电位噪声受刺激对比度的显著影响,但不受其动力学或大小的影响。