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对有关表面方向的视觉信息的视觉运动敏感性。

Visuomotor sensitivity to visual information about surface orientation.

作者信息

Knill David C, Kersten Daniel

机构信息

Center for Visual Science, University of Rochester, Rochester, New York 14627, USA.

出版信息

J Neurophysiol. 2004 Mar;91(3):1350-66. doi: 10.1152/jn.00184.2003. Epub 2003 Oct 29.

Abstract

We measured human visuomotor sensitivity to visual information about three-dimensional surface orientation by analyzing movements made to place an object on a slanted surface. We applied linear discriminant analysis to the kinematics of subjects' movements to surfaces with differing slants (angle away form the fronto-parallel) to derive visuomotor d's for discriminating surfaces differing in slant by 5 degrees. Subjects' visuomotor sensitivity to information about surface orientation was very high, with discrimination "thresholds" ranging from 2 to 3 degrees. In a first experiment, we found that subjects performed only slightly better using binocular cues alone than monocular texture cues and that they showed only weak evidence for combining the cues when both were available, suggesting that monocular cues can be just as effective in guiding motor behavior in depth as binocular cues. In a second experiment, we measured subjects' perceptual discrimination and visuomotor thresholds in equivalent stimulus conditions to decompose visuomotor sensitivity into perceptual and motor components. Subjects' visuomotor thresholds were found to be slightly greater than their perceptual thresholds for a range of memory delays, from 1 to 3 s. The data were consistent with a model in which perceptual noise increases with increasing delay between stimulus presentation and movement initiation, but motor noise remains constant. This result suggests that visuomotor and perceptual systems rely on the same visual estimates of surface slant for memory delays ranging from 1 to 3 s.

摘要

我们通过分析将物体放置在倾斜表面上时所做的动作,来测量人类对三维表面方向视觉信息的视运动敏感性。我们将线性判别分析应用于受试者向不同倾斜度(与额状面的夹角)表面运动的运动学,以得出用于区分倾斜度相差5度的表面的视运动d值。受试者对视表面方向信息的视运动敏感性非常高,辨别“阈值”范围为2至3度。在第一个实验中,我们发现受试者仅使用双眼线索时的表现仅略优于单眼纹理线索,并且当两种线索都可用时,他们仅表现出微弱的线索组合证据,这表明单眼线索在引导深度运动行为方面与双眼线索一样有效。在第二个实验中,我们在等效刺激条件下测量了受试者的知觉辨别和视运动阈值,以将视运动敏感性分解为知觉和运动成分。发现在1至3秒的一系列记忆延迟中,受试者的视运动阈值略高于其知觉阈值。数据与一个模型一致,在该模型中,知觉噪声随着刺激呈现与运动开始之间延迟的增加而增加,但运动噪声保持不变。这一结果表明,在1至3秒的记忆延迟范围内,视运动系统和知觉系统依赖于对表面倾斜度相同的视觉估计。

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