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Texture Segregation Causes Early Figure Enhancement and Later Ground Suppression in Areas V1 and V4 of Visual Cortex

机译:纹理隔离导致视觉皮层的V1和V4区域中的早期图形增强和后期地面抑制

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摘要

Segregation of images into figures and background is fundamental for visual perception. Cortical neurons respond more strongly to figural image elements than to background elements, but the mechanisms of figure–ground modulation (FGM) are only partially understood. It is unclear whether FGM in early and mid-level visual cortex is caused by an enhanced response to the figure, a suppressed response to the background, or both.We studied neuronal activity in areas V1 and V4 in monkeys performing a texture segregation task. We compared texture-defined figures with homogeneous textures and found an early enhancement of the figure representation, and a later suppression of the background. Across neurons, the strength of figure enhancement was independent of the strength of background suppression.We also examined activity in the different V1 layers. Both figure enhancement and ground suppression were strongest in superficial and deep layers and weaker in layer 4. The current–source density profiles suggested that figure enhancement was caused by stronger synaptic inputs in feedback-recipient layers 1, 2, and 5 and ground suppression by weaker inputs in these layers, suggesting an important role for feedback connections from higher level areas. These results provide new insights into the mechanisms for figure–ground organization.
机译:将图像分离为数字和背景是视觉感知的基础。皮质神经元对图形图像元素的响应比对背景元素的响应更强烈,但图形-地面调制(FGM)的机制仅被部分理解。尚不清楚早期和中期视觉皮层中的FGM是由对图形的响应增强,对背景的响应受抑制还是由两者引起的。我们研究了执行纹理分离任务的猴子V1和V4区的神经元活动。我们将纹理定义的图形与同质纹理进行了比较,发现图形表示的早期增强和背景的后期抑制。在整个神经元中,图形增强的强度与背景抑制的强度无关。我们还检查了不同V1层的活性。图的增强和接地抑制在表层和深层都最强,而在第4层则较弱。电流源密度分布图表明,图增强是由反馈接收层1、2和5中较强的突触输入和接地抑制引起的。这些层中较弱的输入,这暗示了较高级别区域的反馈连接的重要作用。这些结果提供了对图背景组织机制的新见解。

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