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The Removal of Binocular Cues Disrupts the Calibration of Grasping in Patients with Visual Form Agnosia

机译:双眼提示的移除打乱了视觉失形患者的掌握标准。

摘要

The present study tested the idea that the visuomotor systems mediating prehension do not have independent access to pictorial cues processed by perceptual mechanisms. Individuals with visual form agnosia, whose perceptual systems are compromised but who have intact visuomotor control, were examined to determine whether they could use pictorial scene cues to calibrate manual prehension when binocular information was removed. The removal of binocular cues produced considerable disruptions in size-constancy of grip aperture, which, combined with earlier observations in normal subjects, suggests that binocular cues are of primary importance in calibration of grasping. In the absence of binocular vision, normal subjects can use pictorial information, information that is severely compromised in individuals with visual form agnosia, to compute the distance (and thus the size) of the goal object. Thus, individuals with visual form agnosia must rely on a retinal image that remains uncalibrated, leading to inaccurate calibrations of grip aperture. The fact that these individuals scaled their grasp much less accurately under the monocular viewing condition, despite showing normal binocular grasping, suggests that pictorial cues to depth, which are presumably processed by mechanisms mediating our perception of objects and events in the world, can be accessed by visuomotor mechanisms only indirectly. These results, together with others, suggest that the visuomotor system ‘prefers’ to use binocular information and uses pictorial cues only as a last resort.
机译:本研究测试了介导感觉运动的视觉运动系统没有独立访问由知觉机制处理的图形提示的想法。视觉形式失常的个体,其感知系统受损,但具有完整的视觉运动控制,将对其进行检查,以确定在去除双眼信息时是否可以使用图像场景提示来校准手动提示。双眼线索的去除在握持孔的大小恒定性上产生了很大的破坏,再加上在正常受试者中的早期观察结果,表明双眼线索对于抓握的校准至关重要。在没有双目视觉的情况下,正常受试者可以使用图像信息(该图像信息在患有视觉形式失常症的个体中受到严重损害)来计算目标物体的距离(从而确定其大小)。因此,具有视觉不可知性的个体必须依赖于未校准的视网膜图像,从而导致抓取孔径的校准不准确。尽管显示出正常的双眼抓握,但这些人在单眼观察条件下很难准确地扩展其抓握能力,这一事实表明,可以获取深度的图像线索,大概是通过调解我们对世界上物体和事件的感知的机制来处理的。只能通过视觉运动机制间接实现。这些结果以及其他结果表明,视觉运动系统“更愿意”使用双目信息,并且仅将图形提示用作最后手段。

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