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Transformation of the Visual Afterimage Under Subject's Eye and Body Movements and the Visual Field Constancy Mechanisms

机译:受试者眼睛和身体运动下视觉残像的转换及视野稳定机制

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Two types of positive afterimages differing in their structural complexitycalled poor and richwere used to investigate the visual field constancy mechanisms during eye and head movements. In the case of a poor afterimage, consistent with Emmert's law, every eye and head movement caused the afterimage to appear moving (in exactly the same way), unlike a real object, which appeared to remain stationary during those same eye and head movements (although its retinal image moved opposite to the eye movement). However, in the case of a rich afterimage, the afterimage appeared stationary during eye movements, while a small stationary test light in the real space appeared to move, violating Emmert's law. It is suggested that, in these two cases, the different apparent transformations reflected functioning of different constancy mechanisms. Both mechanisms implement projection of retinal images upon a hypothetical constant visual screen in strict accordance with the subject's movements but in two different ways. The experiments have indicated that, during binocular fusion, the visual afferent system is able to use information from the structural organization of the visual flow to implement the visual field stability and to calculate gaze direction independently of proprioceptive signals.
机译:两种类型的正余像具有不同的结构复杂性,分别称为差和富,用于研究眼球和头部运动期间的视野恒定机制。在残像差的情况下,根据埃默特定律,每只眼睛和头部的移动都会导致残像看起来在移动(以完全相同的方式),这与真实物体不同,后者在相同的眼睛和头部移动时似乎保持静止(尽管其视网膜图像与眼球运动相反)。但是,在有大量余像的情况下,在眼球运动期间余像看起来是静止的,而现实空间中的一小块静止测试灯似乎在移动,这违反了埃默特定律。建议在这两种情况下,不同的表观转换反映了不同恒定机制的功能。两种机制都严格按照对象的动作,但以两种不同的方式,将视网膜图像投影到假设的恒定视觉屏幕上。实验表明,在双眼融合过程中,视觉传入系统能够使用来自视觉流结构的信息来实现视野稳定性,并独立于本体感受信号来计算凝视方向。

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