Tanabe Seiji, Umeda Kazumasa, Fujita Ichiro
Laboratory for Cognitive Neuroscience, Graduate School of Frontier Biosciences and Graduate School of Engineering Science, Osaka University, Toyonaka, Osaka 560-8531, Japan.
J Neurosci. 2004 Sep 15;24(37):8170-80. doi: 10.1523/JNEUROSCI.5292-03.2004.
A plane lying in depth is vividly perceived by viewing a random-dot stereogram (RDS) with a slight binocular disparity. Perception of a plane-in-depth is lost by reversing the contrast of dots seen by one of the eyes to generate an anticorrelated RDS. From a computational perspective, the visual system cannot find a globally consistent solution for matching the left and right eye images of an anticorrelated RDS. The neural representation of a global match should therefore be insensitive to binocular disparity in an anticorrelated RDS. Most neurons in the striate cortex (V1) respond to binocular disparity in anticorrelated RDSs, suggesting that further cortical processing in extrastriate areas is necessary to fully account for the matching computation. We examined neural responses to dynamic RDSs, both normal (correlated) and anticorrelated, in area V4 of the monkey visual cortex. More than half of the V4 cells were sensitive to the horizontal disparity embedded in a correlated RDS. Most of them greatly attenuated their selectivity for disparity when the RDS was anticorrelated. This attenuation was apparent from the response onset, and the degree of attenuation did not correlate with neuronal response latencies. Unlike the disparity tuning of V1 neurons to anticorrelated RDSs, that of V4 neurons was not an inversion of tuning to normal RDSs. Our results suggest that responses to false matches between contrast-reversed dots in the left and right eye images elicited in V1 are substantially reduced by the stage of V4.
通过观察具有轻微双眼视差的随机点立体图(RDS),可以清晰地感知深度平面。通过反转一只眼睛看到的点的对比度以生成反相关RDS,深度平面的感知就会丧失。从计算的角度来看,视觉系统无法找到一个全局一致的解决方案来匹配反相关RDS的左眼和右眼图像。因此,全局匹配的神经表征应该对反相关RDS中的双眼视差不敏感。纹状皮层(V1)中的大多数神经元对反相关RDS中的双眼视差有反应,这表明在纹外区域进行进一步的皮层处理对于充分解释匹配计算是必要的。我们研究了猴子视觉皮层V4区对动态RDS(包括正常(相关)和反相关)的神经反应。超过一半的V4细胞对相关RDS中嵌入的水平视差敏感。当RDS为反相关时,它们中的大多数大大减弱了对视差的选择性。这种减弱从反应开始就很明显,并且减弱程度与神经元反应潜伏期无关。与V1神经元对反相关RDS的视差调谐不同,V4神经元的视差调谐不是对正常RDS调谐的反转。我们的结果表明,在V1中引发的左眼和右眼图像中对比度反转点之间的错误匹配反应在V4阶段会大幅减少。