Sun Hao, Lee Barry B
SUNY State College of Optometry, New York, NY 10036, USA.
Vis Neurosci. 2004 May-Jun;21(3):315-20. doi: 10.1017/s0952523804213232.
Vernier thresholds are determined by luminance rather than chromatic contrast when both are present in vernier targets. The role of luminance and chromatic mechanisms in vernier performance under equiluminant conditions remains uncertain. Temporal summation functions for vernier thresholds with luminance and red-green equiluminant gratings were compared to those for detection thresholds with similar stimuli. Vernier thresholds showed similar temporal summation for luminance and chromatic gratings, which is consistent with a single mechanism underlying vernier performance in the two conditions. However, detection thresholds showed a shorter temporal summation duration for luminance gratings than for chromatic gratings, which suggests that two different mechanisms underlie detection thresholds. Analysis of physiological data supports the hypothesis that the frequency-doubled response of ganglion cells in the magnocellular pathway can provide accurate spatiotemporal information for vernier performance at equiluminance.
当游标靶中同时存在亮度和颜色对比度时,游标阈值由亮度而非颜色对比度决定。在等亮度条件下,亮度和颜色机制在游标性能中的作用仍不确定。将亮度和红-绿等亮度光栅的游标阈值的时间总和函数与类似刺激的检测阈值的时间总和函数进行了比较。游标阈值在亮度和颜色光栅上表现出相似的时间总和,这与两种条件下游标性能的单一机制一致。然而,检测阈值对亮度光栅的时间总和持续时间比对颜色光栅的短,这表明检测阈值有两种不同的机制。生理数据的分析支持了这样的假设,即大细胞通路中神经节细胞的倍频反应可以为等亮度下的游标性能提供准确的时空信息。