首页> 美国卫生研究院文献>other >Cortical Dynamics of Figure-Ground Separation in Response to 2D Pictures and 3D Scenes: How V2 Combines Border Ownership Stereoscopic Cues and Gestalt Grouping Rules
【2h】

Cortical Dynamics of Figure-Ground Separation in Response to 2D Pictures and 3D Scenes: How V2 Combines Border Ownership Stereoscopic Cues and Gestalt Grouping Rules

机译:响应2D图片和3D场景的图形-地面分离的皮质动力学:V2如何结合边框所有权立体提示和格式塔分组规则

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

The FACADE model, and its laminar cortical realization and extension in the 3D LAMINART model, have explained, simulated, and predicted many perceptual and neurobiological data about how the visual cortex carries out 3D vision and figure-ground perception, and how these cortical mechanisms enable 2D pictures to generate 3D percepts of occluding and occluded objects. In particular, these models have proposed how border ownership occurs, but have not yet explicitly explained the correlation between multiple properties of border ownership neurons in cortical area V2 that were reported in a remarkable series of neurophysiological experiments by von der Heydt and his colleagues; namely, border ownership, contrast preference, binocular stereoscopic information, selectivity for side-of-figure, Gestalt rules, and strength of attentional modulation, as well as the time course during which such properties arise. This article shows how, by combining 3D LAMINART properties that were discovered in two parallel streams of research, a unified explanation of these properties emerges. This explanation proposes, moreover, how these properties contribute to the generation of consciously seen 3D surfaces. The first research stream models how processes like 3D boundary grouping and surface filling-in interact in multiple stages within and between the V1 interblob—V2 interstripe—V4 cortical stream and the V1 blob—V2 thin stripe—V4 cortical stream, respectively. Of particular importance for understanding figure-ground separation is how these cortical interactions convert computationally complementary boundary and surface mechanisms into a consistent conscious percept, including the critical use of surface contour feedback signals from surface representations in V2 thin stripes to boundary representations in V2 interstripes. Remarkably, key figure-ground properties emerge from these feedback interactions. The second research stream shows how cells that compute absolute disparity in cortical area V1 are transformed into cells that compute relative disparity in cortical area V2. Relative disparity is a more invariant measure of an object's depth and 3D shape, and is sensitive to figure-ground properties.
机译:FACADE模型及其在3D LAMINART模型中的层状皮层实现和扩展,已经解释,模拟和预测了许多有关视觉皮层如何执行3D视觉和图形地面感知以及这些皮层机制如何实现的知觉和神经生物学数据2D图片可生成遮挡和遮挡物体的3D感知。尤其是,这些模型提出了边界所有权的发生方式,但尚未明确解释V2皮质区域中边界所有权神经元的多个属性之间的相关性。即边界所有权,对比度偏好,双目立体信息,对图的选择性,格式塔规则,注意调制的强度,以及出现这些特性的时间过程。本文展示了如何通过结合在两个平行研究流中发现的3D LAMINART属性,对这些属性进行统一解释。此外,该解释还提出了这些属性如何促进有意识地看到的3D表面的生成。第一个研究流对3D边界分组和表面填充之类的过程如何分别在V1跨对象-V2跨-V4皮质流和V1斑点-V2细条纹-V4皮质流之内和之间的多个阶段进行交互进行建模。对于理解图形与地面的分离特别重要的是,这些皮质相互作用如何将计算上互补的边界和表面机制转换为一致的有意识感知,包括从V2细条纹中的表面表示到V2条纹中的边界表示的关键使用。值得注意的是,关键的地物属性是从这些反馈交互中产生的。第二个研究流显示了如何将计算皮质区域V1中的绝对差异的单元转换为计算皮质区域V2中的相对差异的单元。相对视差是对象深度和3D形状的不变度量,并且对图形背景属性敏感。

著录项

相似文献

  • 外文文献
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号