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颜色对随机点立体视觉的影响。

Colour inputs to random-dot stereopsis.

作者信息

Stuart G W, Edwards M, Cook M L

机构信息

Centre for Visual Sciences, Australian National University, Canberra.

出版信息

Perception. 1992;21(6):717-29. doi: 10.1068/p210717.

Abstract

Recently it has been claimed by Livingstone and Hubel that, of three anatomically and functionally distinct visual channels (the magnocellular, parvocellular interblob, and blob channels), only the magnocellular channel is involved in the processing of stereoscopic depth. Since the magnocellular system shows little overt colour opponency, the reported loss of the ability to resolve random-dot stereograms defined only by colour contrast seems consistent with this view. However, Julesz observed that reversed-contrast stereograms could be fused if correlated colour information was added. In the present study, 'noise' (non-corresponding) pixels were injected into random-dot stereograms in order to increase fusion time. All six subjects tested were able to achieve stereopsis in less than three minutes when there was only correspondence in colour and not in luminance, and three when luminance contrast was completely reversed. This ability depends on information about the direction of colour contrast, not just the presence of chromatic borders. When luminance and chromatic contrast are defined in terms of signal-to-noise ratios at the photoreceptor mosaic, chromatic information plays at least as important a role in stereopsis as does luminance information, suggesting that the magnocellular channel is not uniquely involved.

摘要

最近,利文斯通和休伯尔声称,在三个解剖学和功能上不同的视觉通道(大细胞通道、小细胞间斑点通道和斑点通道)中,只有大细胞通道参与立体深度的处理。由于大细胞系统几乎没有明显的颜色对立,因此据报道,仅由颜色对比度定义的随机点立体图分辨能力的丧失似乎与这一观点一致。然而,朱尔兹观察到,如果添加相关的颜色信息,反转对比度的立体图可以融合。在本研究中,将“噪声”(不对应)像素注入随机点立体图中以增加融合时间。当只有颜色对应而亮度不对应时,所有六名受试对象都能在不到三分钟内实现立体视觉,而当亮度对比度完全反转时,则需要三分钟。这种能力取决于关于颜色对比度方向的信息,而不仅仅是彩色边界的存在。当根据感光细胞镶嵌体处的信噪比来定义亮度和颜色对比度时,颜色信息在立体视觉中至少与亮度信息起着同样重要的作用,这表明大细胞通道并非唯一参与其中。

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