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人类视觉系统中运动和形态加工的相互作用。

Interactions between motion and form processing in the human visual system.

机构信息

School of Psychology, University of Lincoln Lincoln, UK.

出版信息

Front Comput Neurosci. 2013 May 20;7:65. doi: 10.3389/fncom.2013.00065. eCollection 2013.

Abstract

The predominant view of motion and form processing in the human visual system assumes that these two attributes are handled by separate and independent modules. Motion processing involves filtering by direction-selective sensors, followed by integration to solve the aperture problem. Form processing involves filtering by orientation-selective and size-selective receptive fields, followed by integration to encode object shape. It has long been known that motion signals can influence form processing in the well-known Gestalt principle of common fate; texture elements which share a common motion property are grouped into a single contour or texture region. However, recent research in psychophysics and neuroscience indicates that the influence of form signals on motion processing is more extensive than previously thought. First, the salience and apparent direction of moving lines depends on how the local orientation and direction of motion combine to match the receptive field properties of motion-selective neurons. Second, orientation signals generated by "motion-streaks" influence motion processing; motion sensitivity, apparent direction and adaptation are affected by simultaneously present orientation signals. Third, form signals generated by human body shape influence biological motion processing, as revealed by studies using point-light motion stimuli. Thus, form-motion integration seems to occur at several different levels of cortical processing, from V1 to STS.

摘要

在人类视觉系统中,运动和形态处理的主要观点假设这两个属性是由单独的和独立的模块处理的。运动处理涉及通过方向选择性传感器进行滤波,然后进行整合以解决孔径问题。形态处理涉及通过方位选择性和大小选择性感受野进行滤波,然后进行整合以编码物体形状。长期以来,人们一直知道运动信号可以通过著名的 Gestalt 共同命运原则影响形态处理;共享共同运动属性的纹理元素被组合成单个轮廓或纹理区域。然而,心理物理学和神经科学的最新研究表明,形态信号对运动处理的影响比以前想象的更广泛。首先,移动线的显著性和明显方向取决于局部运动方向和运动的方向如何结合以匹配运动选择性神经元的感受野特性。其次,由“运动条纹”产生的方向信号会影响运动处理;运动敏感性、明显方向和适应受同时存在的方向信号的影响。第三,人体形状产生的形态信号会影响生物运动处理,这一点从使用点光运动刺激的研究中得到了揭示。因此,形态-运动整合似乎发生在皮质处理的几个不同层次,从 V1 到 STS。

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