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Spatial vision of the achromat: spatial frequency and orientation-specific adaptation.

机译:消色差的空间视觉:空间频率和方向特定的适应。

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摘要

1. The psychophysical technique of selective adaptation to stationary sine-wave gratings of varying spatial frequency and orientation was used to investigate the central processing of spatial information in the visual system of the complete achromat. 2. For adapting spatial frequencies of 1 and 2 cycles/deg, the spatial frequency and orientation selectivity of contrast threshold elevation is similar for achromatic and trichromatic vision. 3. For adapting frequencies below 1 cycle/deg, the achromat shows threshold elevations of normal magnitude with symmetrical spatial frequency and orientation tuning for adapting frequencies as low as 0.09 cycles/deg with 'bandwidth' estimates similar to those found at high frequencies in the trichromat. Below 0.66 cycles/deg no after-effect could be obtained in the trichromat, and the frequency tuning at 0.66 cycles/deg was skewed towards higher frequencies. 4. The interocular transfer of low-frequency adaptation in the achromat was 50%, which is the same value obtained at higher frequencies. 5. The time course of the decay of low spatial frequency adaptation in the achromat was similar to that found at higher frequencies. 6. Control experiments show no low-frequency adaptation in peripheral vision or in central vision in the dark-adapted trichromat indicating that low spatial frequency adaptation cannot be elicited through the rod system of the trichromat. 7. It is proposed that the observed range shift of adaptable spatial frequency mechanisms in the achromat's visual cortex is the result of an arrest at an early stage of sensory development. The visual cortex of the achromat is comparable, with respect to spatial processing, to that of the young, visually normal human infant.
机译:1.选择适应于变化的空间频率和方向的固定正弦波光栅的心理物理技术,用于研究整个消色差视觉系统中空间信息的中央处理。 2.为了适应1和2个周期/度的空间频率,对于消色差和三色视觉,对比度阈值提升的空间频率和方向选择性相似。 3.为了适应低于1个周期/度的频率,消色差显示了正常幅度的阈值升高,具有对称的空间频率和方向调整,以适应低至0.09个周期/度的频率,其“带宽”估计类似于在高频下发现的频率。三色性。低于0.66个循环/度,在三色镜中无法获得任何后效应,并且以0.66个循环/度的频率调谐会偏向更高的频率。 4.消色差体中低频适应的眼间转移为50%,与较高频率下获得的值相同。 5.消色差器中低空间频率适应性衰减的时程与高频时相似。 6.控制实验表明,在黑暗适应的三色性眼中,周围视觉或中心视力均未发生低频适应,这表明无法通过三色性体的视杆系统引起低空间频率适应。 7.建议在消色差视觉皮层中观察到的适应性空间频率机制的范围变化是在感觉发育早期被阻滞的结果。在空间处理方面,消色差视觉皮层与年轻的,视觉正常的婴儿相似。

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