Krausz H I, Naka K
Biophys J. 1980 Jan;29(1):13-36. doi: 10.1016/S0006-3495(80)85115-0.
The responses of retinal neurons depend on the interaction of both temporal and spatial aspects of a light stimulus. We developed a linear spatiotemporal model of receptor and horizontal cell layers in the catfish retina based on reciprocal interactions between both layers and coupling within each. Horizontal cell transfer properties were measured experimentally using white-noise intensity modulated light spots of different diameters and were compared with analytical predictions based on the model. Good agreement was obtained with a reasonable choice of model space-constants and feedback parameters. Furthermore, the same set of parameter values determined from spot experiments enabled accurate prediction of experimental horizontal cell responses to traveling gratings. The proposed feedback connections from horizontal cells to receptors quicken the time-course of responses in both layers and sharpen receptive fields.
视网膜神经元的反应取决于光刺激的时间和空间方面的相互作用。我们基于鲶鱼视网膜中受体层和水平细胞层之间的相互作用以及各层内部的耦合,开发了一个线性时空模型。通过使用不同直径的白噪声强度调制光斑,对水平细胞的传递特性进行了实验测量,并将其与基于该模型的分析预测进行了比较。通过合理选择模型空间常数和反馈参数,获得了良好的一致性。此外,从光斑实验确定的同一组参数值能够准确预测水平细胞对移动光栅的实验反应。所提出的从水平细胞到受体的反馈连接加快了两层反应的时间进程,并锐化了感受野。