首页> 外文期刊>Vision Research: An International Journal in Visual Science >Perceived segmentation of center from surround by only illusory contours causes chromatic lateral inhibition
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Perceived segmentation of center from surround by only illusory contours causes chromatic lateral inhibition

机译:仅凭虚幻的轮廓感知到的围绕中心的分割会导致彩色横向抑制

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摘要

When a light and also its surrounding context slowly oscillate in chromaticity over time, the color appearance of the light depends on the relative phase of center and surround. The influence of the surround is generally accounted for by retinotopic center-surround organization, with the surround inhibiting signals from the center. The traditional neural account, however, cannot rule out lateral inhibition due to cortical mechanisms sensitive to object segmentation cues. Experiments here reveal that illusory contours are sufficient to separate a center from its surround. Observers adjusted the Michelson contrast of a matching disk to equal the perceived modulation depth of a central area within a surround. Both the central test and matching disk were maintained at constant luminance and modulated in-phase at 2. Hz along one chromatic axis (L/(L. +. M) or S/(L. +. M)). The center was perceptually segmented from the surround by either a physical (retinotopic separation) or illusory (cortically represented) triangle contour. Segmentation of center from surround by the illusory contour strongly attenuated the perceived modulation depth for both chromatic axes. Further, the strength of attenuation was consistently greater with the illusory than the physically segmenting triangle. This cannot be accounted for by retinal center-surround antagonism; instead it points to a cortical neural representation of contours, with lateral inhibition following neural mechanisms sensitive to object segmentation cues.
机译:当光及其周围环境随时间的过去在色度中缓慢振荡时,光的颜色外观取决于中心和周围的相对相位。周围环境的影响通常由视网膜局部中心周围组织引起,周围环境抑制了来自中心的信号。然而,由于对对象分割线索敏感的皮层机制,传统的神经方法不能排除侧向抑制。这里的实验表明,虚幻的轮廓足以将一个中心与其周围的环境分开。观察者调整了匹配磁盘的迈克尔逊对比度,使其等于周围中央区域的感知调制深度。中央测试盘和匹配盘均保持恒定的亮度,并沿一个色轴(L /(L。+。M)或S /(L。+。M))进行2 Hz的同相调制。通过物理(视黄醛分离)或虚幻(皮质表示)三角形轮廓在视觉上将中心与周围分割开。虚构轮廓将中心与周围的分割强烈削弱了两个色轴的感知调制深度。此外,在虚幻的情况下,衰减强度始终比在物理上分割的三角形要大。视网膜中心周围的拮抗作用不能解释这一点。取而代之的是,它指向轮廓的皮层神经表示,并遵循对对象分割线索敏感的神经机制进行侧向抑制。

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