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双眼竞争会干扰立体视觉。

Binocular rivalry disrupts stereopsis.

作者信息

Harrad R A, McKee S P, Blake R, Yang Y

机构信息

Department of Ophthalmology, University of Bristol, Bristol Eye Hospital, UK.

出版信息

Perception. 1994;23(1):15-28. doi: 10.1068/p230015.

Abstract

Does the shift from binocular rivalry to fusion or stereopsis take time? We measured stereoacuity after rivalry suppression of one half-image of a stereoacuity line target. After the observer signalled that the single stereo half-image had been suppressed, the other half-image was presented for a variable duration. Stereoacuity thresholds were elevated for 150-200 ms. A control experiment demonstrated that the threshold elevation was due to rivalry suppression per se, rather than masking effects associated with the rivalry-inducing target. Monocular Vernier thresholds, measured as the smallest identifiable abrupt shift in the upper line of an aligned Vernier target that had previously been suppressed by rivalry, were elevated for a much longer duration. This result shows that an appropriately matched stereo pair can break rivalry suppression more easily than can monocular changes in position. With the aid of a similar paradigm, we also measured the duration needed to detect a disparate feature in a random-dot stereogram after rivalry suppression of one half-image of the stereogram. Observers could correctly identify the location of the disparate feature (upper or lower visual field) when the other half-image was presented for a duration ranging from 150-650 ms. In the absence of the matching half-image, the first half-image was suppressed by the rival target for a far longer duration (a few seconds). These findings show that although stereopsis and fusion terminate rivalry, both are initially disrupted for a few hundred milliseconds by rivalry suppression.

摘要

从双眼竞争转变为融合或立体视觉需要时间吗?我们在立体视锐度线条目标的一个半图像的竞争抑制后测量了立体视锐度。在观察者发出信号表明单个立体视半图像已被抑制后,呈现另一半图像一段可变的持续时间。立体视锐度阈值在150 - 200毫秒内升高。一项对照实验表明,阈值升高是由于竞争抑制本身,而不是与竞争诱导目标相关的掩蔽效应。单眼游标阈值,以先前被竞争抑制的对齐游标目标上线中可识别的最小突然位移来测量,其升高的持续时间要长得多。这一结果表明,与单眼位置变化相比,适当匹配的立体视对能够更轻松地打破竞争抑制。借助类似的范式,我们还测量了在立体图的一个半图像的竞争抑制后,检测随机点立体图中视差特征所需的持续时间。当呈现另一半图像的持续时间在150 - 650毫秒范围内时,观察者能够正确识别视差特征的位置(上视野或下视野)。在没有匹配的半图像的情况下,第一个半图像被竞争目标抑制的持续时间要长得多(几秒)。这些发现表明,尽管立体视觉和融合会终止竞争,但两者最初都会因竞争抑制而在几百毫秒内受到干扰。

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