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Inhibitory stabilization of the cortical network underlies visual surround suppression.

机译:皮层网络的抑制稳定是视觉环绕抑制的基础。

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In what regime does the cortical circuit operate? Our intracellular studies of surround suppression in cat primary visual cortex (V1) provide strong evidence on this question. Although suppression has been thought to arise from an increase in lateral inhibition, we find that the inhibition that cells receive is reduced, not increased, by a surround stimulus. Instead, suppression is mediated by a withdrawal of excitation. Thalamic recordings and previous work show that these effects cannot be explained by a withdrawal of thalamic input. We find in theoretical work that this behavior can only arise if V1 operates as an inhibition-stabilized network (ISN), in which excitatory recurrence alone is strong enough to destabilize visual responses but feedback inhibition maintains stability. We confirm two strong tests of this scenario experimentally and show through simulation that observed cell-to-cell variability in surround effects, from facilitation to suppression, can arise naturally from variability in the ISN.
机译:皮质回路在什么情况下起作用?我们对猫原发性视觉皮层(V1)周围抑制的细胞内研究为该问题提供了有力的证据。尽管人们认为抑制作用是由于侧向抑制作用的增加而引起的,但我们发现细胞受到的抑制作用是通过周围刺激降低而不是增加。取而代之的是,抑制是通过取消激发来实现的。丘脑录音和先前的工作表明,不能通过撤消丘脑输入来解释这些影响。我们在理论工作中发现,只有当V1作为抑制稳定网络(ISN)时,才会出现这种行为,其中仅兴奋性复发足以使视觉反应不稳定,而反馈抑制则保持稳定性。我们通过实验证实了该场景的两项强大测试,并通过仿真表明,观察到的周围环境从促进到抑制的细胞间变异性可能是由ISN的变异性自然产生的。

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