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Strong Recurrent Networks Compute the Orientation Tuning of Surround Modulation in the Primate Primary Visual Cortex

机译:强循环网络计算灵长类动物初级视觉皮层中周围调制的方向调整。

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摘要

In macaque primary visual cortex (V1), neuronal responses to stimuli inside the receptive field (RF) are modulated by stimuli in the RF surround. This modulation is orientation specific. Previous studies suggested that, for some cells, this specificity may not be fixed but changes with the stimulus orientation presented to the RF. We demonstrate, in recording studies, that this tuning behavior is instead highly prevalent in V1 and, in theoretical work, that it arises only if V1 operates in a regime of strong local recurrence. Strongest surround suppression occurs when the stimuli in the RF and the surround are iso-oriented, and strongest facilitation when the stimuli are cross-oriented. This is the case even when the RF is suboptimally activated by a stimulus of nonpreferred orientation but only if this stimulus can activate the cell when presented alone. This tuning behavior emerges from the interaction of lateral inhibition (via the surround pathways), which is tuned to the preferred orientation of the RF, with weakly tuned, but strong, local recurrent connections, causing maximal withdrawal of recurrent excitation at the feedforward input orientation. Thus, horizontal and feedback modulation of strong recurrent circuits allows the tuning of contextual effects to change with changing feedforward inputs.
机译:在猕猴初级视觉皮层(V1)中,神经元对感受野(RF)内的刺激的反应受到RF周围刺激的调节。此调制是特定于方向的。先前的研究表明,对于某些细胞,这种特异性可能不是固定的,而是随呈现给RF的刺激方向而变化。在录音研究中,我们证明了这种调整行为在V1中非常普遍,并且在理论工作中,只有在V1在强烈的局部复发情况下运行时,这种调整行为才会出现。当RF和周围环境中的刺激是同向的时,发生最强的环绕抑制,而当交叉方向中的刺激是最强的促进。即使通过非优先定向的刺激亚最佳地激活了RF,也只有这种情况,但前提是这种刺激在单独出现时可以激活细胞。这种调谐行为来自横向抑制(通过环绕声路径)的相互作用,该相互作用被调谐到RF的首选方向,具有弱调谐但牢固的局部递归连接,从而导致前馈输入方向上的递归激励最大程度地退出。 。因此,强循环电路的水平和反馈调制允许上下文效应的调整随前馈输入的改变而改变。

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