Nunez Valerie, Shapley Robert M, Gordon James
Center for Neural Science, New York University, New York, NY, USA.
Psychology Department, Hunter College, CUNY, New York, NY, USA.
J Vis. 2017 Sep 1;17(11):9. doi: 10.1167/17.11.9.
The main finding of this paper is that the human visual cortex responds in a very nonlinear manner to the color contrast of pure color patterns. We examined human cortical responses to color checkerboard patterns at many color contrasts, measuring the chromatic visual evoked potential (cVEP) with a dense electrode array. Cortical topography of the cVEPs showed that they were localized near the posterior electrode at position Oz, indicating that the primary cortex (V1) was the major source of responses. The choice of fine spatial patterns as stimuli caused the cVEP response to be driven by double-opponent neurons in V1. The cVEP waveform revealed nonlinear color signal processing in the V1 cortex. The cVEP time-to-peak decreased and the waveform's shape was markedly narrower with increasing cone contrast. Comparison of the linear dynamics of retinal and lateral geniculate nucleus responses with the nonlinear dynamics of the cortical cVEP indicated that the nonlinear dynamics originated in the V1 cortex. The nature of the nonlinearity is a kind of automatic gain control that adjusts cortical dynamics to be faster when color contrast is greater.
本文的主要发现是,人类视觉皮层对纯色图案的颜色对比度以非常非线性的方式做出反应。我们在多种颜色对比度下检查了人类皮层对彩色棋盘图案的反应,使用密集电极阵列测量了彩色视觉诱发电位(cVEP)。cVEP的皮层地形图显示,它们位于Oz位置的后电极附近,表明初级皮层(V1)是主要的反应来源。选择精细的空间图案作为刺激导致cVEP反应由V1中的双拮抗神经元驱动。cVEP波形揭示了V1皮层中的非线性颜色信号处理。随着视锥细胞对比度的增加,cVEP的峰值时间缩短,波形形状明显变窄。将视网膜和外侧膝状体核反应的线性动力学与皮层cVEP的非线性动力学进行比较表明,非线性动力学起源于V1皮层。非线性的本质是一种自动增益控制,当颜色对比度更大时,它会调整皮层动力学使其更快。