Sarna M F, Dec K
Acta Neurobiol Exp (Wars). 1984;44(3):89-103.
The velocity-response curves of the cat's superior colliculus neurons responding to moving stimuli mere studied quantitatively. They were fitted by logarithmic Gaussian curves described by three parameters: optimal stimulus velocity, amplitude and dispersion of the curve. Since reversal of the stimulus movement direction changed neither optimal stimulus velocity nor dispersion of the velocity tuning curve, then the fourth parameter, directional asymmetry, is postulated to describe fully, in conjunction with three parameters mentioned above, the dependence of the neuron response to velocity and direction on the stimulus motion. All parameters were roughly normally distributed and uncorrelated with each other in the sample of cells investigated. Some implications of our results for the classification of cells, and some arguments for population coding against single cell trigger feature coding are discussed.
对猫的上丘神经元对移动刺激的速度反应曲线进行了定量研究。这些曲线由对数高斯曲线拟合,该曲线由三个参数描述:最佳刺激速度、曲线的幅度和离散度。由于刺激运动方向的反转既不改变最佳刺激速度,也不改变速度调谐曲线的离散度,因此假设第四个参数——方向不对称性,与上述三个参数一起,全面描述神经元对速度和方向的反应对刺激运动的依赖性。在所研究的细胞样本中,所有参数大致呈正态分布且相互不相关。讨论了我们的结果对细胞分类的一些影响,以及支持“群体编码”而非单细胞触发特征编码的一些论据。