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突触可塑性对初级视觉皮层平衡模型中方向选择性的影响。

The effect of synaptic plasticity on orientation selectivity in a balanced model of primary visual cortex.

作者信息

Gonzalo Cogno Soledad, Mato Germán

机构信息

Comisión Nacional de Energía Atómica and Consejo Nacional de Investigaciones Científicas y Técnicas, Centro Atómico Bariloche and Instituto Balseiro Bariloche, Argentina.

出版信息

Front Neural Circuits. 2015 Aug 20;9:42. doi: 10.3389/fncir.2015.00042. eCollection 2015.

Abstract

Orientation selectivity is ubiquitous in the primary visual cortex (V1) of mammals. In cats and monkeys, V1 displays spatially ordered maps of orientation preference. Instead, in mice, squirrels, and rats, orientation selective neurons in V1 are not spatially organized, giving rise to a seemingly random pattern usually referred to as a salt-and-pepper layout. The fact that such different organizations can sharpen orientation tuning leads to question the structural role of the intracortical connections; specifically the influence of plasticity and the generation of functional connectivity. In this work, we analyze the effect of plasticity processes on orientation selectivity for both scenarios. We study a computational model of layer 2/3 and a reduced one-dimensional model of orientation selective neurons, both in the balanced state. We analyze two plasticity mechanisms. The first one involves spike-timing dependent plasticity (STDP), while the second one considers the reconnection of the interactions according to the preferred orientations of the neurons. We find that under certain conditions STDP can indeed improve selectivity but it works in a somehow unexpected way, that is, effectively decreasing the modulated part of the intracortical connectivity as compared to the non-modulated part of it. For the reconnection mechanism we find that increasing functional connectivity leads, in fact, to a decrease in orientation selectivity if the network is in a stable balanced state. Both counterintuitive results are a consequence of the dynamics of the balanced state. We also find that selectivity can increase due to a reconnection process if the resulting connections give rise to an unstable balanced state. We compare these findings with recent experimental results.

摘要

方向选择性在哺乳动物的初级视觉皮层(V1)中普遍存在。在猫和猴子中,V1呈现出空间有序的方向偏好图谱。相反,在小鼠、松鼠和大鼠中,V1中的方向选择性神经元并非空间有序排列,而是形成一种看似随机的模式,通常被称为椒盐布局。这种不同的组织方式能够锐化方向调谐这一事实,引发了对皮层内连接结构作用的质疑;特别是可塑性的影响以及功能连接的产生。在这项工作中,我们分析了可塑性过程对这两种情况的方向选择性的影响。我们研究了处于平衡状态的第2/3层的计算模型以及方向选择性神经元的简化一维模型。我们分析了两种可塑性机制。第一种涉及尖峰时间依赖可塑性(STDP),而第二种则根据神经元的偏好方向考虑相互作用的重新连接。我们发现,在某些条件下,STDP确实可以提高选择性,但它的作用方式有些出人意料,也就是说,与未调制部分相比,它有效地降低了皮层内连接的调制部分。对于重新连接机制,我们发现,如果网络处于稳定的平衡状态,增加功能连接实际上会导致方向选择性降低。这两个违反直觉的结果都是平衡状态动力学的结果。我们还发现,如果重新连接过程产生的连接导致不稳定的平衡状态,那么选择性可能会由于重新连接过程而增加。我们将这些发现与最近的实验结果进行了比较。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d569/4542321/54453de9d57a/fncir-09-00042-g0001.jpg

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