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基于时间异步的空间分离特征不变处理。

Feature-invariant processing of spatial segregation based on temporal asynchrony.

机构信息

Graduate School of Informatics, Kyoto University, Kyoto, Japan.

NTT Communication Science Laboratories, Nippon Telegraph and Telephone Corporation, Atsugi, Japan.

出版信息

J Vis. 2024 May 1;24(5):15. doi: 10.1167/jov.24.5.15.

Abstract

Temporal asynchrony is a cue for the perceptual segregation of spatial regions. Past research found attribute invariance of this phenomenon such that asynchrony induces perceptual segmentation regardless of the changing attribute type, and it does so even when asynchrony occurs between different attributes. To test the generality of this finding and obtain insights into the underlying computational mechanism, we compared the segmentation performance for changes in luminance, color, motion direction, and their combinations. Our task was to detect the target quadrant in which a periodic alternation in attribute was phase-delayed compared to the remaining quadrants. When stimulus elements made a square-wave attribute change, target detection was not clearly attribute invariant, being more difficult for motion direction change than for luminance or color changes and nearly impossible for the combination of motion direction and luminance or color. We suspect that waveform mismatch might cause anomalous behavior of motion direction since a square-wave change in motion direction is a triangular-wave change in the spatial phase (i.e., a second-order change in the direction of the spatial phase change). In agreement with this idea, we found that the segregation performance was strongly affected by the waveform type (square wave, triangular wave, or their combination), and when this factor was controlled, the performance was nearly, though not perfectly, invariant against attribute type. The results were discussed with a model in which different visual attributes share a common asynchrony-based segmentation mechanism.

摘要

时间失配是空间区域知觉分离的一个线索。过去的研究发现,这种现象具有属性不变性,即无论属性类型如何变化,失配都会引起知觉分割,即使失配发生在不同的属性之间。为了检验这一发现的普遍性,并深入了解其潜在的计算机制,我们比较了亮度、颜色、运动方向及其组合变化的分割性能。我们的任务是检测目标象限,其中属性的周期性交替相对于其余象限存在相位延迟。当刺激元素进行方波属性变化时,目标检测并不明显具有属性不变性,运动方向变化比亮度或颜色变化更困难,而运动方向与亮度或颜色的组合几乎不可能。我们怀疑,由于运动方向的方波变化是空间相位的三角波变化(即空间相位变化方向的二阶变化),因此波形失配可能导致运动方向的异常行为。与这一观点一致,我们发现,分离性能强烈受到波形类型(方波、三角波或它们的组合)的影响,当控制这个因素时,性能几乎(尽管不是完全)对属性类型不变。我们用一个模型讨论了这些结果,该模型认为不同的视觉属性共享一个基于失配的共同分割机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/972e/11146091/b9ed12733d32/jovi-24-5-15-f001.jpg

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