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全局运动感知:色度与亮度信号的相互作用。

Global-motion perception: interaction of chromatic and luminance signals.

作者信息

Edwards M, Badcock D R

机构信息

Department of Psychology, School of Behavioural Science, University of Melbourne, Parkville, Victoria, Australia.

出版信息

Vision Res. 1996 Aug;36(16):2423-31. doi: 10.1016/0042-6989(95)00304-5.

Abstract

A global dot-motion stimulus was employed in order to investigate the interaction between luminance and chromatic signals in motion processing. Thresholds are determined by measuring the minimum number of dots which need to move in a coherent fashion in a field of randomly moving dots in order for the observers to be able to determine the direction of coherent motion. We found that: (1) observers could not track an achromatic signal-dot which changes its luminance polarity between frame transitions. The addition of a consistent chromatic signal allowed observers to track such a dot when the dot contained low- (8%) luminance contrast but this ability was impaired as the luminance contrast was increased; (2) the addition of chromatic contrast to a dot which contained consistent low-luminance contrast could result in threshold elevation. For fixed contrast chromatic and luminance signals, the presence and degree of threshold elevation depended upon the spatiotemporal properties of the dot motion; (3) the ability of observers to extract a global-motion signal carried by a group of dots of one colour was impaired by the addition of a number of additional-noise dots of a different colour. These results are interpreted as indicating that: (1) the motion-selective cells that are sensitive to chromatic signals are also sensitive to luminance signals; (2) the combined chromatic and luminance and purely luminance motion cells are pooled to form a single pathway prior to global-motion extraction; and (3) the negative interaction observed between the chromatic and luminance signals is likely to be due to the differences in the processing speeds of the combined luminance and chromatic and the purely luminance sensitive motion cells.

摘要

为了研究运动处理中亮度信号与颜色信号之间的相互作用,采用了一种全局点运动刺激。通过测量在随机移动点的场中以连贯方式移动所需的最小点数来确定阈值,以便观察者能够确定连贯运动的方向。我们发现:(1)观察者无法追踪在帧转换之间改变其亮度极性的消色差信号点。当该点包含低(8%)亮度对比度时,添加一致的颜色信号使观察者能够追踪这样的点,但随着亮度对比度的增加,这种能力会受到损害;(2)向包含一致低亮度对比度的点添加颜色对比度可能会导致阈值升高。对于固定对比度的颜色和亮度信号,阈值升高的存在和程度取决于点运动的时空特性;(3)添加一些不同颜色的额外噪声点会损害观察者提取由一组一种颜色的点携带的全局运动信号的能力。这些结果被解释为表明:(1)对颜色信号敏感的运动选择细胞也对亮度信号敏感;(2)在全局运动提取之前,组合的颜色和亮度以及纯亮度运动细胞被合并形成单一通路;(3)在颜色和亮度信号之间观察到的负相互作用可能是由于组合亮度和颜色以及纯亮度敏感运动细胞的处理速度差异所致。

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