Rentschler I, Treutwein B
Nature. 1985;313(6000):308-10. doi: 10.1038/313308a0.
Objects in peripheral vision are not simply blurred but lack quality of form. Assuming that the visual system performs a (patchwise) Fourier analysis of the retinal image (for review see ref. 2), it has been suggested that this disadvantage of peripheral vision may be due to the inability to encode properly spatial phase relationships. This is of great interest for neurological research as certain visual pathologies imply alterations of perceived form. Previous attempts at measuring phase sensitivities failed to distinguish between the detection of phase-related changes in contrast and phase coding in the visual system. We separated these processing strategies by applying the iso-second-order texture paradigm of Julesz to the discrimination of compound gratings. Our results, reported here, show that the energy detection properties of both foveal and peripheral vision are comparable, however, independently of scale, peripheral vision ignores the relative position of image components.
周边视觉中的物体并非仅仅模糊不清,而是缺乏形状质量。假设视觉系统对视网膜图像进行(逐块)傅里叶分析(综述见参考文献2),有人提出周边视觉的这一劣势可能是由于无法正确编码空间相位关系。这对神经学研究极具意义,因为某些视觉病理意味着感知形状的改变。以往测量相位敏感度的尝试未能区分视觉系统中对比度的相位相关变化检测和相位编码。我们通过将朱尔兹的等二阶纹理范式应用于复合光栅的辨别来区分这些处理策略。我们在此报告的结果表明,中央凹视觉和周边视觉的能量检测特性相当,然而,与尺度无关的是,周边视觉忽略图像成分的相对位置。