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立体运动速度感知:在一系列相对视差范围内,变化视差和双眼速度差异的贡献。

Stereomotion speed perception: contributions from both changing disparity and interocular velocity difference over a range of relative disparities.

作者信息

Brooks Kevin R, Stone Leland S

机构信息

San Jose State University Foundation and Human Information Processing Research Branch, NASA Ames Research Center, Moffett Field, CA, USA.

出版信息

J Vis. 2004 Dec 20;4(12):1061-79. doi: 10.1167/4.12.6.

Abstract

The role of two binocular cues to motion in depth-changing disparity (CD) and interocular velocity difference (IOVD)- was investigated by measuring stereomotion speed discrimination and static disparity discrimination performance (stereoacuity). Speed discrimination thresholds were assessed both for random dot stereograms (RDS), and for their temporally uncorrelated equivalents, dynamic random dot stereograms (DRDS), at relative disparity pedestals of -19, 0, and +19 arcmin. While RDS stimuli contain both CD and IOVD cues, DRDS stimuli carry only CD information. On average, thresholds were a factor of 1.7 higher for DRDS than for RDS stimuli with no clear effect of relative disparity pedestal. Results were similar for approaching and receding targets. Variations in stimulus duration had no significant effect on thresholds, and there was no observed correlation between stimulus displacement and perceived speed, confirming that subjects responded to stimulus speed in each condition. Stereoacuity was equally good for our RDS and DRDS stimuli, showing that the difference in stereomotion speed discrimination performance for these stimuli was not due to any difference in the precision of the disparity cue. In addition, when we altered stereomotion stimulus trajectory by independently manipulating the speeds and directions of its monocular half-images, perceived stereomotion speed remained accurate. This finding is inconsistent with response strategies based on properties of either monocular half-image motion, or any ad hoc combination of the monocular speeds. We conclude that although subjects are able to discriminate stereomotion speed reliably on the basis of CD information alone, IOVD provides a precise additional cue to stereomotion speed perception.

摘要

通过测量立体运动速度辨别和静态视差辨别性能(立体视敏度),研究了深度变化视差(CD)和眼间速度差异(IOVD)这两种双眼深度运动线索的作用。在相对视差基座为-19、0和+19分弧度的情况下,对随机点立体图(RDS)及其时间上不相关的等效物动态随机点立体图(DRDS)评估了速度辨别阈值。虽然RDS刺激包含CD和IOVD线索,但DRDS刺激仅携带CD信息。平均而言,DRDS的阈值比RDS刺激高1.7倍,相对视差基座没有明显影响。接近和后退目标的结果相似。刺激持续时间的变化对阈值没有显著影响,并且未观察到刺激位移与感知速度之间的相关性,这证实了受试者在每种情况下都对刺激速度做出了反应。我们的RDS和DRDS刺激的立体视敏度同样良好,表明这些刺激在立体运动速度辨别性能上的差异不是由于视差线索精度的任何差异。此外,当我们通过独立操纵其单眼半图像的速度和方向来改变立体运动刺激轨迹时,感知到的立体运动速度仍然准确。这一发现与基于单眼半图像运动属性或单眼速度的任何临时组合的反应策略不一致。我们得出结论,虽然受试者仅基于CD信息就能可靠地辨别立体运动速度,但IOVD为立体运动速度感知提供了一个精确的额外线索。

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