Buck Steven L, Thomas Laura P, Connor Cassandra R, Green Katelyn B, Quintana Tzire
Department of Psychology, University of Washington, Seattle, Washington 98195-1525, USA.
Vis Neurosci. 2008 May-Jun;25(3):517-20. doi: 10.1017/S0952523808080279.
Stimulation of dark-adapted rods can shift the hues associated with specific wavelengths throughout the spectrum: Rods exert a green bias (strengthen green relative to red) at longer wavelengths and a blue bias (strengthen blue relative to yellow) at short-to-middle wavelengths. A third rod influence at shorter wavelengths is more complicated because it has been shown to reverse direction with change of stimulus duration. Thus, for 30-ms stimuli, rods exert a green bias like that observed at longer wavelengths. However, for 1-s stimuli, rods exert a red bias that is observed nowhere else in the spectrum. We examined the latency (time course) of rod hue biases by measuring the shifts of the three spectral unique hues under dark-adapted versus bleached (cone plateau) conditions. The rod green bias at unique yellow (mean 10 nm) and, in contrast to some prior studies, the rod blue bias at unique green (mean 21 nm) were not systematically affected by test stimulus duration. A quick rod green bias (mean 5 nm) was shown at unique blue for two of three observers but was dominated by a slower rod red bias (mean 11 nm) after 30-50 ms of rod stimulation. These opposing rod influences may reflect competing effects of rod signals on ML-cone and S-cone pathways.
视杆细胞在较长波长处呈现绿色偏向(相对于红色增强绿色),在短至中波长处呈现蓝色偏向(相对于黄色增强蓝色)。视杆细胞在较短波长处的第三种影响更为复杂,因为已表明它会随着刺激持续时间的变化而改变方向。因此,对于30毫秒的刺激,视杆细胞呈现出与在较长波长处观察到的类似的绿色偏向。然而,对于1秒的刺激,视杆细胞呈现出光谱中其他地方都未观察到的红色偏向。我们通过测量暗适应与漂白(视锥细胞平台期)条件下三种光谱独特色调的偏移,研究了视杆细胞色调偏向的潜伏期(时间进程)。独特黄色处的视杆细胞绿色偏向(平均10纳米),以及与一些先前研究不同的是,独特绿色处的视杆细胞蓝色偏向(平均21纳米),并未受到测试刺激持续时间的系统性影响。对于三名观察者中的两名,在独特蓝色处显示出快速的视杆细胞绿色偏向(平均5纳米),但在视杆细胞刺激30 - 50毫秒后,被较慢的视杆细胞红色偏向(平均11纳米)主导。这些相反的视杆细胞影响可能反映了视杆细胞信号对M - L视锥细胞和S - 视锥细胞通路的竞争作用。