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Imbalanced amplification: A mechanism of amplification and suppression from local imbalance of excitation and inhibition in cortical circuits

机译:不平衡扩增:从局部失衡的扩增和抑制在皮质电路中的抑制机制

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摘要

Understanding the relationship between external stimuli and the spiking activity of cortical populations is a central problem in neuroscience. Dense recurrent connectivity in local cortical circuits can lead to counterintuitive response properties, raising the question of whether there are simple arithmetical rules for relating circuits' connectivity structure to their response properties. One such arithmetic is provided by the mean field theory of balanced networks, which is derived in a limit where excitatory and inhibitory synaptic currents precisely balance on average. However, balanced network theory is not applicable to some biologically relevant connectivity structures. We show that cortical circuits with such structure are susceptible to an amplification mechanism arising when excitatory-inhibitory balance is broken at the level of local subpopulations, but maintained at a global level. This amplification, which can be quantified by a linear correction to the classical mean field theory of balanced networks, explains several response properties observed in cortical recordings and provides fundamental insights into the relationship between connectivity structure and neural responses in cortical circuits.
机译:了解外部刺激与皮质群的尖刺活动之间的关系是神经科学中的核心问题。局部皮质电路中的密集反复连接可导致逆行的响应性,提出了是否存在简单的算术规则,以将电路的连接结构与其响应属性相关联。通过平衡网络的平均场理论提供一种这样的算法,其衍生在兴奋性和抑制突触电流平均平均平衡的极限中。然而,平衡的网络理论不适用于一些生物相关的连接结构。我们表明,当兴奋性抑制的平衡在当地亚步骤水平处被破坏时,具有这种结构的皮质电路容易受到引起的放大机制,但在全球层面保持。该放大可以通过对平衡网络的经典平均场理论的线性校正来定量,解释了在皮质记录中观察到的几种响应性质,并为皮质电路中的连接结构和神经响应之间的关系提供了根本的见解。

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