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Anticipating the three-dimensional consequences of eye movements

机译:预测眼球运动的三维后果

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Rapid eye movements called saccades give rise to sudden, enormous changes in optic information arriving at the eye; how the world nonetheless appears stable is known as the problem of spatial constancy. One consequence of saccades is that the directions of all visible points shift uniformly; directional or 2D constancy, the fact that we do not perceive this change, has received extensive study for over a century. The problems raised by 3D consequences of saccades, on the other hand, have been neglected. When the eye rotates in space, the 3D orientation of all stationary surfaces undergoes an equal-and-opposite rotation with respect to the eye. When presented with a an optic simulation of a saccade but with the eyes still, observers readily perceive this depth rotation of surfaces; when simultaneously performing the corresponding saccade, the 3D orientations of surfaces are perceived as stable, a phenomenon I propose calling 3D spatial constancy. In experiments presented here, observers viewed ambiguous 3D rotations immediately before, during, or after a sac-cade. The results show that before the eyes begin to move the brain anticipates the 3D consequences of saccades, preferring to perceive the rotation opposite to the impending eye movement. Further, the anticipation is absent when observers fixate while experiencing optically simulated saccades, and therefore must be evoked by extraretinal signals. Such anticipation could provide a mechanism for 3D spatial constancy and transsaccadic integration of depth information.
机译:称为扫视的快速眼动会导致到达眼部的光学信息突然发生巨大变化。世界如何保持稳定被称为空间恒定性问题。扫视的结果之一是所有可见点的方向均匀地移动。定向或2D不变性(我们没有察觉到这种变化的事实)已经接受了一个多世纪的广泛研究。另一方面,扫视的3D后果所引起的问题已被忽略。当眼睛在空间中旋转时,所有固定表面的3D方向都相对于眼睛进行相同和相反的旋转。当呈现扫视的光学模拟但眼睛静止不动时,观察者可以轻松地感知到表面的这种深度旋转。当同时执行相应的扫视时,表面的3D方向被认为是稳定的,我建议将这种现象称为3D空间恒定性。在此处介绍的实验中,观察者在囊球课程之前,之中或之后立即观看了模糊的3D旋转。结果表明,在眼睛开始移动之前,大脑会预料到扫视的3D后果,而是希望感知与即将发生的眼球运动相反的旋转。此外,当观察者凝视并经历光学模拟的扫视时不存在预期,因此必须由视网膜外信号引起。这样的预期可以提供用于深度信息的3D空间恒定性和跨声音积分的机制。

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