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Circuits and Mechanisms for Surround Modulation in Visual Cortex
Annual Review of Neuroscience ( IF 13.9 ) Pub Date : 2017-08-03 00:00:00 , DOI: 10.1146/annurev-neuro-072116-031418
Alessandra Angelucci 1 , Maryam Bijanzadeh 1 , Lauri Nurminen 1 , Frederick Federer 1 , Sam Merlin 1 , Paul C Bressloff 2
Affiliation  

Surround modulation (SM) is a fundamental property of sensory neurons in many species and sensory modalities. SM is the ability of stimuli in the surround of a neuron's receptive field (RF) to modulate (typically suppress) the neuron's response to stimuli simultaneously presented inside the RF, a property thought to underlie optimal coding of sensory information and important perceptual functions. Understanding the circuit and mechanisms for SM can reveal fundamental principles of computations in sensory cortices, from mouse to human. Current debate is centered over whether feedforward or intracortical circuits generate SM, and whether this results from increased inhibition or reduced excitation. Here we present a working hypothesis, based on theoretical and experimental evidence, that SM results from feedforward, horizontal, and feedback interactions with local recurrent connections, via synaptic mechanisms involving both increased inhibition and reduced recurrent excitation. In particular, strong and balanced recurrent excitatory and inhibitory circuits play a crucial role in the computation of SM.

中文翻译:


视觉皮层中环绕调制的电路和机制

环绕调制 (SM) 是许多物种和感觉方式中感觉神经元的基本特性。SM 是神经元感受野 (RF) 周围的刺激调节(通常抑制)神经元对同时呈现在 RF 内的刺激的反应的能力,这一特性被认为是感觉信息和重要感知功能的最佳编码的基础。了解 SM 的电路和机制可以揭示从小鼠到人类的感觉皮层计算的基本原理。当前的争论集中在前馈或皮质内电路是否会产生 SM,以及这是否是由于抑制增加或兴奋减少所致。在这里,我们提出了一个基于理论和实验证据的工作假设,即 SM 由前馈、水平、以及与局部循环连接的反馈相互作用,通过涉及增加抑制和减少循环激发的突触机制。特别是,强大且平衡的反复兴奋和抑制电路在 SM 的计算中起着至关重要的作用。

更新日期:2017-08-03
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