Limits of spatial-frequency discrimination as evidence of neural interpolation.

J Hirsch, R Hylton
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引用次数: 114

Abstract

We have studied the ability of observers to discriminate between suprathreshold vertical sinusoidal spatial-frequency gratings on the basis of spatial frequency. The results show that spatial-frequency discrimination is not a smooth function of spatial frequency but instead appears regularly segmented. Similar results were also obtained in an experiment in which observers discriminated between pairs of narrow vertical lines on the basis of their separation. Angular resolutions achieved for both discrimination tasks were less than the spacing between photo-receptors, requiring some type of neural interpolation. The similarity between the two sets of data indicates that discrimination between spatial-frequency gratings is probably based on the separation between two features exactly one cycle apart. We suggest that the segmentation reflects the existence of neural-image representations with discrete levels of spatial accuracy.

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空间频率识别的局限性作为神经插值的证据。
我们研究了观测者在空间频率的基础上区分超阈值垂直正弦空间频率光栅的能力。结果表明,空间频率识别不是空间频率的平滑函数,而是呈现出规则的分割。在一个实验中也得到了类似的结果,在这个实验中,观察者根据他们的分离来区分一对狭窄的垂直线。两种识别任务的角度分辨率都小于光感受器之间的间距,需要某种类型的神经插值。两组数据之间的相似性表明,空间频率光栅之间的区分可能是基于两个特征之间精确间隔一个周期的分离。我们认为分割反映了具有离散空间精度水平的神经图像表示的存在。
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期刊介绍: OSA was published by The Optical Society from January 1917 to December 1983 before dividing into JOSA A: Optics and Image Science and JOSA B: Optical Physics in 1984.
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