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由时间调制亮度对比度和同化产生的表观运动。

Apparent motion produced by temporally modulated brightness contrast and assimilation.

作者信息

Kooi F L

机构信息

TNO Human Factors Research Institute, Soesterberg, The Netherlands.

出版信息

J Opt Soc Am A Opt Image Sci Vis. 1995 Feb;12(2):234-40. doi: 10.1364/josaa.12.000234.

Abstract

When regions containing a counterphasing sine-wave grating are presented side by side and in spatial and temporal quadrature phase, a transparent perception of motion results. This occurs even though none of the stimulus parts is moving. The two percepts of motion in these displays are in opposite directions, one analogous to brightness contrast, the other to brightness assimilation. If the regions are separated by a gap, the contrast and assimilation motions remain visible for separations up to 0.5 and 1 period, respectively. Both motions occur at temporal frequencies from 1 to 16 Hz. The perceived motion analogous to brightness assimilation is easily modeled with elongated receptive fields that integrate flux along the long axis, such as simple cells. The perceived motion analogous to brightness contrast can be accounted for by receptive fields that subtract the flux in one region from the flux in another region. Examples are center-surround subunits such as are found in the elaborated Reichart model [W. Reichardt, in Sensory Communication, W. A. Rosenblith, ed. (MIT Press, Cambridge, Mass., 1961), pp. 303-317; J. P. H. van Santen and G. Sperling, J. Opt. Soc. Am. A 2, 300-321 (1985)]. The dual perceived motion suggests that more than one kind of motion channel (distinguished by the two-dimensional receptive field of the front-end filter) is present in the human visual system.

摘要

当包含反相正弦波光栅的区域并排呈现且处于空间和时间正交相位时,会产生一种透明的运动感知。即使刺激部分都没有移动,这种情况也会发生。这些显示中的两种运动感知方向相反,一种类似于亮度对比,另一种类似于亮度同化。如果这些区域被一个间隙隔开,对于高达0.5个周期和1个周期的间隔,对比运动和同化运动仍然可见。两种运动都出现在1到16赫兹的时间频率范围内。类似于亮度同化的感知运动很容易用沿着长轴整合通量的细长感受野来建模,比如简单细胞。类似于亮度对比的感知运动可以由从一个区域的通量中减去另一个区域的通量的感受野来解释。例如中心-外周亚基,如在精细的赖夏特模型中发现的那样[W. 赖夏特,载于《感觉通信》,W. A. 罗森布鲁斯编(麻省理工学院出版社,马萨诸塞州剑桥,1961年),第303 - 317页;J. P. H. 范桑滕和G. 斯佩林,《美国光学学会志A》2,300 - 321(1985年)]。这种双重感知运动表明人类视觉系统中存在不止一种运动通道(由前端滤波器的二维感受野区分)。

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