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Multiple components of surround modulation in primary visual cortex: multiple neural circuits with multiple functions?

机译:主视觉皮层中周围调制的多个组成部分:具有多种功能的多个神经回路?

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摘要

The responses of neurons in primary visual cortex (V1) to stimulation of their receptive field (RF) are modulated by stimuli in the RF surround. This modulation is suppressive when the stimuli in the RF and surround are of similar orientation, but less suppressive or facilitatory when they are cross-oriented. Similarly, in human vision surround stimuli selectively suppress the perceived contrast of a central stimulus. Although the properties of surround modulation have been thoroughly characterized in many species, cortical areas and sensory modalities, its role in perception remains unknown. Here we argue that surround modulation in V1 consists of multiple components having different spatio-temporal and tuning properties, generated by different neural circuits and serving different visual functions. One component arises from LGN afferents, is fast, untuned for orientation, and spatially restricted to the surround region nearest to the RF (the near-surround); its function is to normalize V1 cell responses to local contrast. Intra-V1 horizontal connections contribute a slower, narrowly orientation-tuned component to near-surround modulation, whose function is to increase the coding efficiency of natural images in manner that leads to the extraction of object boundaries. The third component is generated by topdown feedback connections to V1, is fast, broadly orientation-tuned, and extends into the far-surround; its function is to enhance the salience of behaviorally relevant visual features. Far- and near-surround modulation, thus, act as parallel mechanisms: the former quickly detects and guides saccades/attention to salient visual scene locations, the latter segments object boundaries in the scene.
机译:初级视觉皮层(V1)中神经元对其感受野(RF)刺激的反应受到RF周围刺激的调节。当RF和周围的刺激具有相似的方向时,此调制是抑制性的,但是当它们交叉取向时,则抑制性或促进性较小。类似地,在人类视觉中,周围刺激选择性地抑制中央刺激的感知对比度。尽管在许多物种,皮层区域和感觉模态中已充分表征了周围调制的特性,但其在感知中的作用仍然未知。在这里,我们认为,V1中的环绕调制由具有不同时空和调谐特性的多个组件组成,这些组件是由不同的神经回路生成的并且具有不同的视觉功能。一种成分来自LGN传入,速度快,未针对方向进行调整,并且在空间上限制在最靠近RF的周围区域(近周围);它的功能是标准化V1细胞对局部对比度的反应。 V1内水平连接为近环绕调制贡献了较慢的,经过窄定向调整的分量,其功能是以导致提取对象边界的方式提高自然图像的编码效率。第三个分量是由与V1的自上而下的反馈连接生成的,它进行了快速,广泛的方向调整,并延伸到远处。它的功能是增强与行为相关的视觉特征的显着性。因此,远和近环绕调制用作并行机制:前者快速检测并引导扫视/注意到显着的视觉场景位置,后者则将场景中的对象边界进行分割。

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