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垂直诱导运动中的上下不对称性。

Up-down asymmetry in vertical induced motion.

作者信息

Lott L A, Post R B

机构信息

Department of Psychology, University of California, Davis 95616.

出版信息

Perception. 1993;22(5):527-35. doi: 10.1068/p220527.

Abstract

Induced motion (IM) is the illusory movement of an object in the direction opposite to the real motion of adjacent detail. One theory of IM suggests that it results, in part, from suppression of optokinetic nystagmus (OKN) by fixational (smooth-pursuit) effort. In several studies an asymmetry in human vertical OKN has been reported, with upward optokinetic stimulation eliciting higher OKN gain than downward motion. This provides a test of the nystagmus-suppression theory of IM. If suppression of OKN contributes significantly to IM, upward inducing stimuli should result in a greater magnitude of the illusion than should downward stimulus motion. Additionally, the asymmetry of vertical OKN should become more pronounced at higher stimulus velocities. Therefore, the asymmetry of vertical IM should be greater at higher inducing-stimulus velocities. Twelve subjects viewed a large, random-dot stimulus, which moved either upward or downward at a velocity of 10, 40, or 70 deg s-1. Subjects fixated a horizontally moving laser spot and adjusted a rod to match the apparent slope of the motion path of the spot. IM magnitude was derived from these measures. Mean IM velocity was significantly higher with upward than with downward stimulation, and the difference was maximal at velocities of 40 and 70 deg s-1. The results are discussed within the context of the nystagmus-suppression theory and other theories of IM.

摘要

诱导运动(IM)是指物体朝着与相邻细节真实运动方向相反的方向产生的虚幻运动。IM的一种理论认为,它部分源于注视(平稳跟踪)努力对视动性眼球震颤(OKN)的抑制。在多项研究中,已报道人类垂直OKN存在不对称性,向上的视动刺激比向下运动引发更高的OKN增益。这为IM的眼球震颤抑制理论提供了一个检验。如果OKN的抑制对IM有显著贡献,那么向上的诱导刺激应该比向下的刺激运动产生更大程度的错觉。此外,垂直OKN的不对称性在更高的刺激速度下应该会更加明显。因此,垂直IM的不对称性在更高的诱导刺激速度下应该会更大。12名受试者观看了一个大的随机点刺激,该刺激以10、40或70度/秒的速度向上或向下移动。受试者注视一个水平移动的激光点,并调整一根杆以匹配该点运动路径的视在斜率。IM大小由这些测量得出。向上刺激时的平均IM速度显著高于向下刺激,且差异在40和70度/秒的速度下最大。将在眼球震颤抑制理论和其他IM理论的背景下讨论这些结果。

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