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通过视网膜像运动增强光泽感知:头部跟踪运动视差的附加效应。

Enhancement of glossiness perception by retinal-image motion: additional effect of head-yoked motion parallax.

机构信息

Department of Computer Science and Engineering, Toyohashi University of Technology, Toyohashi, Aichi, Japan.

出版信息

PLoS One. 2013;8(1):e54549. doi: 10.1371/journal.pone.0054549. Epub 2013 Jan 15.

Abstract

It has been argued that when an observer moves, a contingent retinal-image motion of a stimulus would strengthen the perceived glossiness. This would be attributed to the veridical perception of three-dimensional structure by motion parallax. However, it has not been investigated whether the effect of motion parallax is more than that of retinal-image motion of the stimulus. Using a magnitude estimation method, we examine in this paper whether cross-modal coordination of the stimulus change and the observer's motion (i.e., motion parallax) is essential or the retinal-image motion alone is sufficient for enhancing the perceived glossiness. Our data show that a retinal-image motion simulating motion parallax without head motion strengthened the perceived glossiness but that its effect was weaker than that of motion parallax with head motion. These results suggest the existence of an additional effect of the cross-modal coordination between vision and proprioception on glossiness perception. That is, motion parallax enhances the perception of glossiness, in addition to retinal-image motions of specular surfaces.

摘要

有人认为,当观察者移动时,刺激物的偶然视网膜图像运动会增强感知的光泽度。这归因于运动视差对三维结构的真实感知。然而,尚未研究运动视差的影响是否超过刺激物视网膜图像运动的影响。本文采用数量估计法,研究了刺激物变化与观察者运动(即运动视差)的跨模态协调是否是增强感知光泽度的必要条件,还是仅视网膜图像运动就足以增强感知光泽度。我们的数据表明,模拟运动视差而没有头部运动的视网膜图像运动会增强感知光泽度,但效果弱于带有头部运动的运动视差。这些结果表明,在光泽度感知中,视觉和本体感觉之间的跨模态协调存在额外的效果。也就是说,除了镜面物体的视网膜图像运动外,运动视差还增强了光泽度的感知。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/affb/3545876/7c8974fc3de7/pone.0054549.g001.jpg

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