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空间上远距离运动信号之间关系的快速编码。

Rapid encoding of relationships between spatially remote motion signals.

作者信息

Maruya Kazushi, Holcombe Alex O, Nishida Shin'ya

机构信息

NTT Communication Science Labs, Nippon Telegraph and Telephone Corporation, Japan.

出版信息

J Vis. 2013 Feb 6;13(2):4. doi: 10.1167/13.2.4.

DOI:10.1167/13.2.4
PMID:23390318
Abstract

For visual processing, the temporal correlation of remote local motion signals is a strong cue to detect meaningful large-scale structures in the retinal image, because related points are likely to move together regardless of their spatial separation. While the processing of multi-element motion patterns involved in biological motion and optic flow has been studied intensively, the encoding of simpler pairwise relationships between remote motion signals remains poorly understood. We investigated this process by measuring the temporal rate limit for perceiving the relationship of two motion directions presented at the same time at different spatial locations. Compared to luminance or orientation, motion comparison was more rapid. Performance remained very high even when interstimulus separation was increased up to 100°. Motion comparison also remained rapid regardless of whether the two motion directions were similar to or different from each other. The exception was a dramatic slowing when the elements formed an orthogonal "T," in which two motions do not perceptually group together. Motion presented at task-irrelevant positions did not reduce performance, suggesting that the rapid motion comparison could not be ascribed to global optic flow processing. Our findings reveal the existence and unique nature of specialized processing that encodes long-range relationships between motion signals for quick appreciation of global dynamic scene structure.

摘要

对于视觉处理而言,远程局部运动信号的时间相关性是检测视网膜图像中有意义的大规模结构的有力线索,因为相关点无论其空间距离如何都可能一起移动。虽然对生物运动和光流中涉及的多元素运动模式的处理已得到深入研究,但对远程运动信号之间更简单的成对关系的编码仍知之甚少。我们通过测量感知同时出现在不同空间位置的两个运动方向之间关系的时间速率极限来研究这一过程。与亮度或方向相比,运动比较更快。即使刺激间间隔增加到100°,表现仍然非常高。无论两个运动方向彼此相似还是不同,运动比较也仍然很快。例外情况是当元素形成正交的“T”时会急剧减慢,在这种情况下两个运动在感知上不会归为一组。出现在任务无关位置的运动不会降低表现,这表明快速的运动比较不能归因于全局光流处理。我们的研究结果揭示了专门处理的存在和独特性质,这种处理对运动信号之间的远距离关系进行编码,以便快速理解全局动态场景结构。

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