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立体视觉的最大可探测度(Dmax)取决于大小,而非空间频率内容。

Dmax for stereopsis depends on size, not spatial frequency content.

作者信息

Wilcox L M, Hess R F

机构信息

McGill Vision Research, Department of Ophthalmology, McGill University, Montreal, Quebec, Canada.

出版信息

Vision Res. 1995 Apr;35(8):1061-9. doi: 10.1016/0042-6989(94)00199-v.

Abstract

Stereoacuity depends not only on the carrier frequency of Gabor stimuli, but also upon their size. To determine if this is also the case at large disparities, we have measured the upper limit for stereopsis, "Dmax", and assessed its dependence on carrier frequency and overall envelope size. The results differ markedly from the stereoacuity data. Dmax for stereopsis is primarily dependent on the size of the envelope of the Gabor patch, and is relatively independent of its carrier frequency. These results support the proposition that stereopsis is achieved at large disparities by way of non-linear processing (envelope extraction).

摘要

立体视敏度不仅取决于Gabor刺激的载波频率,还取决于其大小。为了确定在大视差情况下是否也是如此,我们测量了立体视觉的上限“Dmax”,并评估了其对载波频率和整体包络大小的依赖性。结果与立体视敏度数据明显不同。立体视觉的Dmax主要取决于Gabor斑块包络的大小,并且相对独立于其载波频率。这些结果支持了这样一种观点,即立体视觉是通过非线性处理(包络提取)在大视差情况下实现的。

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