Gafni H, Zeevi Y Y
Biol Cybern. 1979 Mar 19;32(3):165-73. doi: 10.1007/BF00337393.
Processing of spatio-temporal information in the human visual system has been investigated thoroughly during the past decade, but is still far from being properly understood. Moreover, the theory of separation of information by means of sustained and transient channels already at the retinal level is not satisfactory, as experimental results indicate that these two types of channels span a continuum of temporal characteristics. It is however obvious, that the process of pattern recognition and velocity perception calls for their separation at some level of the hierarchy. In this communication, we extend our model of three-dimensional spatio-temporal frequency expansion in the visual system (Gafni and Zeevi, 1977) to show how velocity-information extraction channels, sensitive to direction and velocity exclusively, can be formed by simple summation of signals from well-defined sets of channels representing points in the frequency space. Correspondence of these channels to characteristics of the cortical neurons is discussed.
在过去十年中,人们对人类视觉系统中时空信息的处理进行了深入研究,但仍远未得到充分理解。此外,视网膜层面就通过持续和瞬态通道进行信息分离的理论并不令人满意,因为实验结果表明这两种类型的通道跨越了一个连续的时间特征范围。然而,很明显,模式识别和速度感知过程需要在层次结构的某个层面进行信息分离。在本通讯中,我们扩展了视觉系统中三维时空频率扩展模型(加夫尼和泽维,1977年),以展示如何通过对代表频率空间中各点的明确通道集合的信号进行简单求和,形成仅对方向和速度敏感的速度信息提取通道。还讨论了这些通道与皮层神经元特征的对应关系。