Department of Ophthalmology & Visual Sciences, McGill University, McGill Vision Research, 1650 Cedar Ave, Room L11.112, Montreal, QC, H3G 1A4, Canada.
Department of Neuroscience, School of Medicine and Public Health, University of Wisconsin-Madison, Madison, WI, 53705, USA.
Sci Rep. 2022 Nov 9;12(1):19116. doi: 10.1038/s41598-022-23293-8.
Retinal ganglion cells initiating the magnocellular/Y-cell visual pathways respond nonlinearly to high spatial frequencies (SFs) and temporal frequencies (TFs). This nonlinearity is implicated in the processing of contrast modulation (CM) stimuli in cats and monkeys, but its contribution to human visual perception is not well understood. Here, we evaluate human psychophysical performance for CM stimuli, consisting of a high SF grating carrier whose contrast is modulated by a low SF sinewave envelope. Subjects reported the direction of motion of CM envelopes or luminance modulation (LM) gratings at different eccentricities. The performance on SF (for LMs) or carrier SF (for CMs) was measured for different TFs (LMs) or carrier TFs (CMs). The best performance for LMs was at lower TFs and SFs, decreasing systematically with eccentricity. However, performance with CMs was bandpass with carrier SF, largely independent of carrier TF, and at the highest carrier TF (20 Hz) decreased minimally with eccentricity. Since the nonlinear subunits of Y-cells respond better at higher TFs compared to the linear response components and respond best at higher SFs that are relatively independent of eccentricity, these results suggest that behavioral tasks employing CM stimuli might reveal nonlinear contributions of retinal Y-like cells to human perception.
起始于大细胞/ Y 细胞视觉通路的视网膜神经节细胞对高空间频率 (SF) 和时间频率 (TF) 的非线性响应。这种非线性与猫和猴子的对比度调制 (CM) 刺激的处理有关,但它对人类视觉感知的贡献尚不清楚。在这里,我们评估了人类对 CM 刺激的心理物理性能,这些刺激由对比度调制的高 SF 光栅载波组成,由低 SF 正弦波包络调制。受试者报告 CM 包络或亮度调制 (LM) 光栅在不同偏心度下的运动方向。对于不同的 TF (LM) 或载波 TF (CM),测量了 SF (LM) 或载波 SF (CM) 的性能。LM 的最佳性能出现在较低的 TF 和 SF 下,随着偏心度的增加而系统地降低。然而,CM 的性能与载波 SF 呈带通,与载波 TF 基本无关,在最高载波 TF (20 Hz) 下,随着偏心度的增加,CM 的性能下降最小。由于与线性响应分量相比,Y 细胞的非线性亚单位在较高的 TF 下响应更好,并且在相对独立于偏心度的较高 SF 下响应最佳,因此这些结果表明,采用 CM 刺激的行为任务可能会揭示视网膜 Y 样细胞对人类感知的非线性贡献。