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高速运动下单向运动路径的感知收缩

Perceptual shrinkage of a one-way motion path with high-speed motion.

作者信息

Nakajima Yutaka, Sakaguchi Yutaka

机构信息

Laboratory for Human Informatics, Graduate School of Information Systems, The University of Electro-Communications, Tokyo, Japan.

出版信息

Sci Rep. 2016 Jul 28;6:30592. doi: 10.1038/srep30592.

Abstract

Back-and-forth motion induces perceptual shrinkage of the motion path, but such shrinkage is hardly perceived for one-way motion. If the shrinkage is caused by temporal averaging of stimulus position around the endpoints, it should also be induced for one-way motion at higher motion speeds. In psychophysical experiments with a high-speed projector, we tested this conjecture for a one-way motion stimulus at various speeds (4-100 deg/s) along a straight path. Results showed that perceptual shrinkage of the motion path was robustly observed in higher-speed motion (faster than 66.7 deg/s). In addition, the amount of the forwards shift at the onset position was larger than that of the backwards shift at the offset position. These results demonstrate that high-speed motion can induce shrinkage, even for a one-way motion path. This can be explained by the view that perceptual position is represented by the integration of the temporal average of instantaneous position and the motion representation.

摘要

来回运动会导致运动路径产生感知收缩,但这种收缩在单向运动中几乎难以察觉。如果这种收缩是由端点周围刺激位置的时间平均引起的,那么在较高运动速度下的单向运动中也应该会出现。在使用高速投影仪进行的心理物理学实验中,我们针对沿直线路径以各种速度(4 - 100°/秒)运动的单向运动刺激测试了这一猜想。结果表明,在高速运动(快于66.7°/秒)中能稳健地观察到运动路径的感知收缩。此外,起始位置的向前偏移量大于终点位置的向后偏移量。这些结果表明,即使对于单向运动路径,高速运动也会导致收缩。这可以通过以下观点来解释,即感知位置由瞬时位置的时间平均值与运动表征的整合来表示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c293/4964654/eadbe09eb94e/srep30592-f1.jpg

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