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首页> 外文期刊>Vision Research: An International Journal in Visual Science >Perceptual mechanisms underlying amodal surface integration of 3-D stereoscopic stimuli
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Perceptual mechanisms underlying amodal surface integration of 3-D stereoscopic stimuli

机译:3-D立体刺激的Amodal表面整合潜在的感知机制

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摘要

The visual system can represent a partially occluded 3-D surface from images of separated surface segments. The underlying amodal surface integration process accomplishes this by amodally extending each surface segment behind the occluder (amodal surface extension) and integrating the extended surfaces to form a whole surface representation. We conducted five experiments to investigate how depth cues, such as binocular disparity, half-occlusion, and monocular depth cues (T-junctions and L-junctions), contribute to amodal surface extension, and how the geometrical relationship and image similarity among the surface segments affect surface integration. This was achieved by having observers adjust the stereoscopic depth and slant of a comparison stimulus to match those of the tested 3-D stimulus. We found that both binocular disparity and half-occlusion cues are used to determine border-ownership assignment of surface segments and for amodal surface extension. We also found that separated surface segments need to have the same luminance contrast-polarity for them to be integrated as a whole surface. Finally, we found that having the same motion direction, minimum misalignment between boundary contours, and proximity among separated segments facilitate their integration. Overall, our findings reveal a set of “perceptual factors” for amodal surface integration, which arguably reflects our visual system’s built-in knowledge of the regularities in natural scenes.
机译:视觉系统可以代表来自分离的表面段的图像的部分封闭的3-D表面。底层的Amodal表面整合过程通过叠加在封堵器(Amodal表面延伸)后面的每个表面段并积分扩展表面来实现这一点,以形成整个表面表示。我们进行了五项实验来调查深度提示,例如双目视差,半闭塞和单眼深度提示(T-Chonction和L-Chincions),有助于对阳极表面延伸以及表面之间的几何关系和图像相似性如何细分会影响表面集成。这是通过使观察者调节对比较刺激的立体深度和倾斜来实现的,以匹配测试的3-D刺激的刺激。我们发现双目视差和半闭塞线索用于确定表面段的边界所有权和用于阳极表面延伸的分配。我们还发现,分离的表面段需要具有相同的亮度对比度,供它们作为整个表面集成。最后,我们发现具有相同的运动方向,边界轮廓之间的最小未对准,并且分离的段之间的接近度有助于它们的积分。总体而言,我们的调查结果揭示了一组“感知因素”,适用于Amodal Surface Integration,可使可以反映我们的视觉系统在自然场景中的规律的内置知识。

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