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Fovea-Periphery Axis Symmetry of Surround Modulation in the Human Visual System

机译:人类视觉系统中环绕声调制的中央凹-外围轴对称

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摘要

A visual stimulus activates different sized cortical area depending on eccentricity of the stimulus. Here, our aim is to understand whether the visual field size of a stimulus or cortical size of the corresponding representation determines how strongly it interacts with other stimuli. We measured surround modulation of blood-oxygenation-level-dependent signal and perceived contrast with surrounds that extended either towards the periphery or the fovea from a center stimulus, centered at 6° eccentricity. This design compares the effects of two surrounds which are identical in visual field size, but differ in the sizes of their cortical representations. The surrounds produced equally strong suppression, which suggests that visual field size of the surround determines suppression strength. A modeled population of neuronal responses, in which all the parameters were experimentally fixed, captured the pattern of results both in psychophysics and functional magnetic resonance imaging. Although the fovea-periphery anisotropy affects nearly all aspects of spatial vision, our results suggest that in surround modulation the visual system compensates for it.
机译:视觉刺激根据刺激的离心率激活不同大小的皮质区域。在这里,我们的目的是了解刺激的视野大小或相应表示的皮质大小决定了它与其他刺激相互作用的强度。我们测量了与血液氧合水平相关的信号的周围调制,并与以中心偏心6°为中心从中央刺激向周边或中央凹延伸的周围形成了对比。此设计比较了视野大小相同但皮层表示大小不同的两个周围的效果。环绕声产生同样强烈的抑制,这表明环绕声的视野大小决定了抑制强度。在实验中确定了所有参数的神经元反应模型种群中,捕获了心理物理学和功能磁共振成像结果的模式。尽管中央凹周围的各向异性几乎影响了空间视觉的所有方面,但我们的结果表明,在环绕调制中,视觉系统会对其进行补偿。

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