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猕猴视觉皮层V1区而非V2区存在对比度依赖的相位敏感性。

Contrast-dependent phase sensitivity in V1 but not V2 of macaque visual cortex.

作者信息

Cloherty Shaun L, Ibbotson Michael R

机构信息

National Vision Research Institute, Australian College of Optometry, Carlton, Victoria, Australia; ARC Centre of Excellence for Integrative Brain Function and Department of Optometry and Vision Sciences, University of Melbourne, Parkville, Victoria, Australia; and Department of Electrical and Electronic Engineering, University of Melbourne, Parkville, Victoria, Australia

National Vision Research Institute, Australian College of Optometry, Carlton, Victoria, Australia; ARC Centre of Excellence for Integrative Brain Function and Department of Optometry and Vision Sciences, University of Melbourne, Parkville, Victoria, Australia; and.

出版信息

J Neurophysiol. 2015 Jan 15;113(2):434-44. doi: 10.1152/jn.00539.2014. Epub 2014 Oct 29.

Abstract

Some neurons in early visual cortex are highly selective for the position of oriented edges in their receptive fields (simple cells), whereas others are largely position insensitive (complex cells). These characteristics are reflected in their sensitivity to the spatial phase of moving sine-wave gratings: simple cell responses oscillate at the fundamental frequency of the stimulus, whereas this is less so for complex cells. In primates, when assessed at high stimulus contrast, simple cells and complex cells are roughly equally represented in the first visual cortical area, V1, whereas in the second visual area, V2, the majority of cells are complex. Recent evidence has shown that phase sensitivity of complex cells is contrast dependent. This has led to speculation that reduced contrast may lead to changes in the spatial structure of receptive fields, perhaps due to changes in how feedforward and recurrent signals interact. Given the substantial interconnections between V1 and V2 and recent evidence for the emergence of unique functional capacity in V2, we assess the relationship between contrast and phase sensitivity in the two brain regions. We show that a substantial proportion of complex cells in macaque V1 exhibit significant increases in phase sensitivity at low contrast, whereas this is rarely observed in V2. Our results support a degree of hierarchical processing from V1 to V2 with the differences possibly relating to the fact that V1 combines both subcortical and cortical input, whereas V2 receives input purely from cortical circuits.

摘要

早期视觉皮层中的一些神经元对其感受野中定向边缘的位置具有高度选择性(简单细胞),而其他神经元在很大程度上对位置不敏感(复杂细胞)。这些特征反映在它们对移动正弦波光栅空间相位的敏感性上:简单细胞的反应以刺激的基频振荡,而复杂细胞则不然。在灵长类动物中,在高刺激对比度下评估时,简单细胞和复杂细胞在第一视觉皮层区域V1中大致等量存在,而在第二视觉区域V2中,大多数细胞是复杂细胞。最近的证据表明,复杂细胞的相位敏感性依赖于对比度。这引发了一种推测,即对比度降低可能导致感受野空间结构的变化,这可能是由于前馈和反馈信号相互作用方式的改变所致。鉴于V1和V2之间存在大量相互连接,以及最近关于V2中出现独特功能能力的证据,我们评估了这两个脑区中对比度与相位敏感性之间的关系。我们发现,猕猴V1中的很大一部分复杂细胞在低对比度下相位敏感性显著增加,而在V2中很少观察到这种情况。我们的结果支持从V1到V2的一定程度的层级处理,这种差异可能与以下事实有关:V1结合了皮层下和皮层输入,而V2仅接收来自皮层回路的输入。

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