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阈值下对比度检测的神经关联

Neural correlates of contrast detection at threshold.

作者信息

Thiele A, Dobkins K R, Albright T D

机构信息

The Salk Institute for Biological Studies, La Jolla, California 92037, USA.

出版信息

Neuron. 2000 Jun;26(3):715-24. doi: 10.1016/s0896-6273(00)81207-6.

Abstract

Human psychophysical studies have demonstrated that, for stimuli near the threshold of visibility, detection of motion in one direction is unaffected by the superimposition of motion in the opposite direction. To investigate the neural basis for this perceptual phenomenon, we recorded from directionally selective neurons in macaque visual area MT (middle temporal visual area). Contrast thresholds obtained for single gratings moving in a neuron's preferred direction were compared with those obtained for motion presented simultaneously in the neuron's preferred and antipreferred directions. A simple model based on probability summation between neurons tuned to opposite directions could sufficiently account for contrast thresholds revealed psychophysically, suggesting that area MT is likely to provide the neural basis for contrast detection of stimuli modulated in time.

摘要

人类心理物理学研究表明,对于接近可见阈值的刺激,一个方向上的运动检测不受相反方向运动叠加的影响。为了研究这种感知现象的神经基础,我们记录了猕猴视觉区域MT(颞中区)中具有方向选择性的神经元的活动。将在神经元偏好方向上移动的单个光栅的对比度阈值,与同时在神经元偏好和反偏好方向上呈现的运动的对比度阈值进行比较。一个基于调谐到相反方向的神经元之间概率求和的简单模型,足以解释心理物理学揭示的对比度阈值,这表明MT区域可能为时间调制刺激的对比度检测提供神经基础。

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