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垂直视差对猕猴深度表征的影响:MT区的生理学与行为学研究

Effect of vertical disparities on depth representation in macaque monkeys: MT physiology and behavior.

作者信息

Chowdhury Syed A, Christiansen Daniel L, Morgan Michael L, DeAngelis Gregory C

机构信息

Department of Anatomy and Neurobiology, Washington University School of Medicine,Saint Louis, Missouri, USA.

出版信息

J Neurophysiol. 2008 Feb;99(2):876-87. doi: 10.1152/jn.00732.2007. Epub 2007 Dec 12.

Abstract

Horizontal binocular disparities provide information about the distance of objects relative to the point of ocular fixation and must be combined with an estimate of viewing distance to recover the egocentric distance of an object. Vergence angle and the gradient of vertical disparities across the visual field are thought to provide independent sources of viewing distance information based on human behavioral studies. Although the effect of vergence angle on horizontal disparity selectivity in early visual cortex has been examined (with mixed results), the effect of the vertical disparity field has not been explored. We manipulated the vertical disparities in a large random-dot stimulus to simulate different viewing distances, and we examined the effect of this manipulation on both the responses of neurons in the middle temporal (MT) area and on the psychophysical performance of the animal in a curvature discrimination task. We report here that alterations to the vertical disparity field have no effect on the horizontal disparity tuning of MT neurons. However, the same manipulation strongly and systematically biases the monkey's judgments of curvature, consistent with previous human studies. We conclude that monkeys, like humans, make use of the vertical disparity field to estimate viewing distance, but that the physiological mechanisms for this effect occur either downstream of MT or in a different pathway.

摘要

水平双眼视差提供了关于物体相对于眼注视点距离的信息,并且必须与观看距离的估计相结合,以恢复物体的自我中心距离。基于人类行为研究,双眼辐辏角和整个视野中垂直视差的梯度被认为提供了观看距离信息的独立来源。尽管已经研究了双眼辐辏角对早期视觉皮层中水平视差选择性的影响(结果不一),但垂直视差场的影响尚未被探究。我们在一个大的随机点刺激中操纵垂直视差,以模拟不同的观看距离,并研究这种操纵对颞中区(MT)神经元的反应以及动物在曲率辨别任务中的心理物理学表现的影响。我们在此报告,垂直视差场的改变对MT神经元的水平视差调谐没有影响。然而,相同的操纵强烈且系统地偏向猴子对曲率的判断,这与先前的人类研究一致。我们得出结论,猴子与人类一样,利用垂直视差场来估计观看距离,但这种效应的生理机制要么发生在MT的下游,要么发生在不同的通路中。

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