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共线刺激诱导行为猴子视觉皮层的局部和跨区域相干性。

Collinear stimuli induce local and cross-areal coherence in the visual cortex of behaving monkeys.

机构信息

The Gonda Multidisciplinary Brain Research Center, Bar-Ilan University, Ramat Gan, Israel.

出版信息

PLoS One. 2012;7(11):e49391. doi: 10.1371/journal.pone.0049391. Epub 2012 Nov 19.

Abstract

BACKGROUND

Collinear patterns of local visual stimuli are used to study contextual effects in the visual system. Previous studies have shown that proximal collinear flankers, unlike orthogonal, can enhance the detection of a low contrast central element. However, the direct neural interactions between cortical populations processing the individual flanker elements and the central element are largely unknown.

METHODOLOGY/PRINCIPAL FINDINGS: Using voltage-sensitive dye imaging (VSDI) we imaged neural population responses in V1 and V2 areas in fixating monkeys while they were presented with collinear or orthogonal arrays of Gabor patches. We then studied the spatio-temporal interactions between neuronal populations processing individual Gabor patches in the two conditions. Time-frequency analysis of the stimulus-evoked VSDI signal showed power increase mainly in low frequencies, i.e., the alpha band (α; 7-14 Hz). Power in the α-band was more discriminative at a single trial level than other neuronal population measures. Importantly, the collinear condition showed an increased intra-areal (V1-V1 and V2-V2) and inter-areal (V1-V2) α-coherence with shorter latencies than the orthogonal condition, both before and after the removal of the stimulus contribution. α-coherence appeared between discrete neural populations processing the individual Gabor patches: the central element and the flankers.

CONCLUSIONS/SIGNIFICANCE: Our findings suggest that collinear effects are mediated by synchronization in a distributed network of proximal and distant neuronal populations within and across V1 and V2.

摘要

背景

共线模式的局部视觉刺激被用于研究视觉系统中的上下文效应。先前的研究表明,近端共线侧翼,与正交相比,可以增强低对比度中央元素的检测。然而,处理个别侧翼元素和中央元素的皮质群体之间的直接神经相互作用在很大程度上是未知的。

方法/主要发现:使用电压敏感染料成像(VSDI),我们在固定猴子中成像了 V1 和 V2 区域的神经群体反应,同时呈现共线或正交的 Gabor 补丁阵列。然后,我们研究了两种条件下处理单个 Gabor 补丁的神经元群体之间的时空相互作用。刺激诱发的 VSDI 信号的时频分析显示,功率主要在低频增加,即α带(α;7-14 Hz)。与其他神经元群体测量相比,α 带中的功率在单试水平上更具可区分性。重要的是,与正交条件相比,共线条件在刺激贡献去除前后都显示出更高的区域内(V1-V1 和 V2-V2)和区域间(V1-V2)α 相干性,潜伏期更短。α 相干性出现在处理个别 Gabor 补丁的离散神经群体之间:中央元素和侧翼。

结论/意义:我们的发现表明,共线效应是由 V1 和 V2 内和跨内的近端和远距离神经元群体的同步在分布式网络中介导的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5286/3501522/f7c7f3eca061/pone.0049391.g001.jpg

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