Ahissar Ehud, Ozana Shira, Arieli Amos
Department of Neurobiology, Weizmann Institute of Science, Rehovot, Israel
Department of Neurobiology, Weizmann Institute of Science, Rehovot, Israel.
Perception. 2015;44(8-9):986-94. doi: 10.1177/0301006615594946.
Eye movements (eyeM) are an essential component of visual perception. They allow the sampling and scanning of stationary scenes at various spatial scales, primarily at the scene level, via saccades, and at the local level, via fixational eyeM. Given the constant motion of visual images on the retina, a crucial factor in resolving spatial ambiguities related to the external scene is the exact trajectory of eyeM. We show here that the trajectory of eyeM can be encoded at high resolution by simple retinal receptive fields of the symmetrical type. We also show that such encoding can account for motion illusions such as the Ouchi illusion. In addition, encoding of motion projections along horizontal and vertical symmetrical simple retinal receptive fields entails a kind of Cartesian decomposition of the 2-D image into two 1-D projections.
眼动是视觉感知的重要组成部分。它们允许在各种空间尺度上对静止场景进行采样和扫描,主要是在场景层面通过扫视,在局部层面通过注视眼动。鉴于视网膜上视觉图像的不断运动,解决与外部场景相关的空间模糊性的一个关键因素是眼动的确切轨迹。我们在此表明,眼动轨迹可以由对称类型的简单视网膜感受野以高分辨率进行编码。我们还表明,这种编码可以解释诸如大内错觉等运动错觉。此外,沿着水平和垂直对称简单视网膜感受野对运动投影进行编码需要将二维图像进行一种笛卡尔分解,分解为两个一维投影。