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持续的中央凹周围刺激揭示的局部空间通道的更简单结构。

A simpler structure for local spatial channels revealed by sustained perifoveal stimuli.

作者信息

Kontsevich Leonid L, Tyler Christopher W

机构信息

Smith-Kettlewell Eye Research Institute, San Francisco, CA, USA.

出版信息

J Vis. 2013 Jan 18;13(1):22. doi: 10.1167/13.1.22.

Abstract

A new evaluation of the local structure of spatial channels with sustained stimuli in perifoveal retina employs the masking sensitivity approach to minimize analytic assumptions. The stimuli were designed to address the range of channel tunings of the predominantly sustained response system in the near periphery. Under these conditions, the range of identifiable channels spanned a narrow range of spatial frequencies, from roughly 2-8 cpd at 2° eccentricity to 1-4 cpd at 8° eccentricity. The analysis showed that there are no sustained channels tuned below 2 cpd for the central visual field. This two-octave range of channel tuning is much narrower than is conventionally assumed. For local sustained stimuli, human peripheral spatial processing therefore appears to be based on a simpler channel structure than is often supposed.

摘要

一项针对中央凹周围视网膜持续刺激下空间通道局部结构的新评估采用了掩蔽敏感性方法,以尽量减少分析假设。这些刺激旨在覆盖近周边主要持续反应系统的通道调谐范围。在这些条件下,可识别通道的范围跨越了较窄的空间频率范围,从偏心度2°时约2 - 8周/度到偏心度8°时1 - 4周/度。分析表明,中央视野中不存在调谐低于2周/度的持续通道。这种两个八度的通道调谐范围比传统假设的要窄得多。因此,对于局部持续刺激,人类周边空间处理似乎基于比通常认为的更简单的通道结构。

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