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在颜色适应条件下运动检测的位移阈值。

Displacement thresholds for motion detection under conditions of chromatic adaptation.

作者信息

Barbur J L, Saunders J E

出版信息

Ophthalmic Physiol Opt. 1985;5(1):5-13.

PMID:3975044
Abstract

The smallest, continuous target displacement which is sufficient to cause a sensation of movement was measured under conditions of chromatic adaptation. The experiments were carried out for test target and background field wavelengths which selectively isolate the activity of the colour mechanisms of the human eye. The results show that, when target detection is largely mediated by the red or green colour mechanism, a target displacement of 2-3' in the foveal region is sufficient to cause a reliable sensation of movement. These displacement thresholds show only a small change as a function of target contrast or background retinal illuminance level. Similar results were obtained when the colour of the test target was the same as that of the background field (e.g. green, yellow or red), when no attempt was made to isolate a single colour mechanism. Test target and background wavelengths which isolate the activity of the blue colour mechanism yield displacement thresholds in the range 5-7' and show a stronger dependence on target contrast and background retinal illuminance level. The experiments were repeated at several eccentricities and the results show that, for a test target and background field of the same colour and under conditions which isolate the green or red spectral response mechanism, the minimum target displacement required for motion detection appears to increase in a manner similar to the centre-width receptive-field size of broad-band, centre--surround transient neurons in the rhesus monkey retina [De Monasterio and Gouras (1975) J. Physiol., Lond. 251, 167-195].(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在颜色适应条件下,测量了足以引起运动感觉的最小连续目标位移。针对选择性分离人眼颜色机制活动的测试目标和背景场波长进行了实验。结果表明,当目标检测主要由红色或绿色颜色机制介导时,中央凹区域2 - 3分的目标位移足以引起可靠的运动感觉。这些位移阈值仅随目标对比度或背景视网膜照度水平有微小变化。当测试目标颜色与背景场颜色相同时(如绿色、黄色或红色),在未尝试分离单一颜色机制的情况下,也获得了类似结果。分离蓝色颜色机制活动的测试目标和背景波长产生的位移阈值在5 - 7分范围内,且对目标对比度和背景视网膜照度水平的依赖性更强。在几个偏心度下重复了实验,结果表明,对于相同颜色的测试目标和背景场,在分离绿色或红色光谱响应机制的条件下,运动检测所需的最小目标位移似乎以类似于恒河猴视网膜中宽带中心 - 周边瞬态神经元中心宽度感受野大小的方式增加[德莫纳斯特里奥和古拉(1975年)《生理学杂志》,伦敦251卷,167 - 195页]。(摘要截于250字)

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