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深度线索整合在抓取编程中:没有证据表明存在双眼专门化。

Depth-cue integration in grasp programming: no evidence for a binocular specialism.

机构信息

School of Psychology, Bangor University, Wales, United Kingdom.

School of Psychology, University of St. Andrews, Scotland, United Kingdom.

出版信息

Neuropsychologia. 2011 Apr;49(5):1246-1257. doi: 10.1016/j.neuropsychologia.2011.02.047. Epub 2011 Mar 1.

Abstract

When we grasp with one eye covered, the finger and thumb are typically opened wider than for binocularly guided grasps, as if to build a margin-for-error into the movement. Also, patients with visual form agnosia can have profound deficits in their (otherwise relatively normal) grasping when binocular information is removed. One interpretation of these findings is that there is a functional specialism for binocular vision in the control of grasping. Alternatively, cue-integration theory suggests that binocular and monocular depth cues are combined in the control of grasping, and so impaired performance reflects not the loss of 'critical' binocular cues, but increased uncertainty per se. Unfortunately, removing binocular information confounds removing particular (binocular) depth cues with an overall reduction in the available information, and so such experiments cannot distinguish between these alternatives. We measured the effects on visually open-loop grasping of selectively removing monocular (texture) or binocular depth cues. To allow meaningful comparisons, we made psychophysical measurements of the uncertainty in size estimates in each case, so that the informativeness of binocular and monocular cues was known in each condition. Consistent with cue-integration theory, removing either binocular or monocular cues resulted in similar increases in grip apertures. In a separate experiment, we also confirmed that changes in uncertainty per se (keeping the same depth cues available) resulted in larger grip apertures. Overall, changes in the margin-for-error in grasping movements were determined by the uncertainty in size estimates and not by the presence or absence of particular depth cues. Our data therefore argue against a binocular specialism for grasp programming. Instead, grip apertures were smaller when binocular and monocular cues were available than with either cue alone, providing strong evidence that the visuo-motor system exploits the redundancy available in multiple sources of information, and integrates binocular and monocular cues to improve grasping performance.

摘要

当我们用一只眼睛遮住时,手指和拇指通常会比双眼引导的抓握张开得更宽,好像是为运动留出了误差空间。此外,当去除双眼信息时,即使视觉形态识别障碍患者的抓握(在其他方面相对正常)也会受到严重影响。这些发现的一种解释是,在抓握控制方面,双眼视觉具有功能特殊性。或者,线索整合理论表明,双眼和单眼深度线索在抓握控制中结合在一起,因此,表现不佳反映的不是“关键”双眼线索的丧失,而是本身的不确定性增加。不幸的是,去除双眼信息会混淆去除特定(双眼)深度线索与整体可用信息的减少,因此此类实验无法区分这些替代方案。我们测量了选择性去除单眼(纹理)或双眼深度线索对视觉开环抓握的影响。为了进行有意义的比较,我们在每种情况下对大小估计的不确定性进行了心理物理学测量,以便在每种情况下都知道双眼和单眼线索的信息量。与线索整合理论一致,去除双眼或单眼线索都会导致握持开口相似地增加。在另一个实验中,我们还证实,本身不确定性的变化(保持相同的深度线索可用)会导致握持开口更大。总体而言,抓握运动中误差空间的变化取决于大小估计的不确定性,而不是特定深度线索的存在与否。因此,我们的数据反对用于抓握编程的双眼特殊性。相反,当双眼和单眼线索都可用时,握持开口比只有一个线索时小,这有力地证明了视觉运动系统利用多个信息源的冗余性,并整合双眼和单眼线索以提高抓握性能。

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