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奇数对称机制中的敏感度损失与周边视觉中的相位异常。

Sensitivity loss in odd-symmetric mechanisms and phase anomalies in peripheral vision.

作者信息

Bennett P J, Banks M S

出版信息

Nature. 1987;326(6116):873-6. doi: 10.1038/326873a0.

Abstract

The ability to detect, discriminate and identify spatial stimuli is much poorer in the peripheral than in the central visual field. Some deficits are eliminated by scaling stimulus size. For example, grating detectibility is roughly constant across the visual field when spatial frequency and target extent are scaled appropriately. Other deficits persist despite scaling. For instance, some readily detectable patterns are more difficult to identify peripherally than in the fovea. This deficit is caused, at least partially, by a reduced ability to encode spatial phase (or relative position). To specify the properties of foveal and peripheral phase-encoding mechanisms, we measured discrimination thresholds for compound gratings at several eccentricities. Our observations are consistent with a two-channel model of phase encoding based on even- and odd-symmetric mechanisms (see Fig. 1), but the sensitivity of the odd-symmetric mechanisms decreases dramatically with eccentricity. Thus, the loss of sensitivity in one type of mechanism may underlie the reduced ability to encode spatial phase peripherally.

摘要

检测、区分和识别空间刺激的能力在周边视野中远不如在中央视野中。通过调整刺激大小可以消除一些缺陷。例如,当空间频率和目标范围适当调整时,光栅的可检测性在整个视野中大致保持恒定。尽管进行了调整,其他缺陷仍然存在。例如,一些易于检测的图案在周边比在中央凹更难识别。这种缺陷至少部分是由编码空间相位(或相对位置)的能力降低引起的。为了明确中央凹和周边相位编码机制的特性,我们测量了在几个偏心度下复合光栅的辨别阈值。我们的观察结果与基于偶对称和奇对称机制的双通道相位编码模型一致(见图1),但奇对称机制的灵敏度随着偏心度的增加而急剧下降。因此,一种机制中灵敏度的丧失可能是周边编码空间相位能力降低的基础。

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