Kayser Andrew S, Miller Kenneth D
Department of Physiology, W.M. Keck Center for Integrative Neuroscience, University of California, San Francisco 94143, USA.
Neuron. 2002 Jan 3;33(1):131-42. doi: 10.1016/s0896-6273(01)00570-0.
We model the development of the functional circuit of layer 4 (the input-recipient layer) of cat primary visual cortex. The observed thalamocortical and intracortical circuitry codevelop under Hebb-like synaptic plasticity. Hebbian development yields opponent inhibition: inhibition evoked by stimuli anticorrelated with those that excite a cell. Strong opponent inhibition enables recognition of stimulus orientation in a manner invariant to stimulus contrast. These principles may apply to cortex more generally: Hebb-like plasticity can guide layer 4 of any piece of cortex to create opposition between anticorrelated stimulus pairs, and this enables recognition of specific stimulus patterns in a manner invariant to stimulus magnitude. Properties that are invariant across a cortical column are predicted to be those shared by opponent stimulus pairs; this contrasts with the common idea that a column represents cells with similar response properties.
我们对猫初级视觉皮层第4层(输入接收层)功能回路的发育进行建模。观察到丘脑皮质和皮质内回路在类赫布突触可塑性作用下共同发育。赫布式发育产生拮抗抑制:与兴奋某个细胞的刺激呈反相关的刺激所诱发的抑制。强大的拮抗抑制能够以与刺激对比度无关的方式识别刺激方向。这些原理可能更普遍地适用于皮层:类赫布可塑性可以引导任何一块皮层的第4层在反相关刺激对之间产生拮抗作用,这使得能够以与刺激强度无关的方式识别特定的刺激模式。预计在整个皮质柱中不变的属性是拮抗刺激对所共有的属性;这与柱状结构代表具有相似反应特性的细胞这一普遍观点形成对比。