Hegdé J, Van Essen D C
Department of Anatomy and Neurobiology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
J Neurosci. 2000 Mar 1;20(5):RC61. doi: 10.1523/JNEUROSCI.20-05-j0001.2000.
To explore the role of visual area V2 in shape analysis, we studied the responses of neurons in area V2 of the alert macaque using a set of 128 grating and geometric line stimuli that varied in their shape characteristics and geometric complexity. Simple stimuli included oriented bars and sinusoidal gratings; complex stimuli included angles, arcs, circles, and intersecting lines, plus hyperbolic and polar gratings. We found that most V2 cells responded well to at least some of the complex stimuli, and in many V2 cells the most effective complex stimulus elicited a significantly larger response than the most effective bar or sinusoid. Approximately one-third of the V2 cells showed significant differential responsiveness to various complex shape characteristics, and many were also selective for the orientation, size, and/or spatial frequency of the preferred shape. These results indicate that V2 cells explicitly represent complex shape information and suggest specific types of higher order visual information that V2 cells extract from visual scenes.
为了探究视觉区域V2在形状分析中的作用,我们使用了一组128种光栅和几何线条刺激,这些刺激在形状特征和几何复杂度上有所不同,研究了警觉猕猴V2区域神经元的反应。简单刺激包括定向条纹和正弦光栅;复杂刺激包括角度、弧线、圆形和相交线,以及双曲线和极坐标光栅。我们发现,大多数V2细胞对至少一些复杂刺激反应良好,并且在许多V2细胞中,最有效的复杂刺激引发的反应明显大于最有效的条纹或正弦波。大约三分之一的V2细胞对各种复杂形状特征表现出显著的差异反应性,并且许多细胞还对首选形状的方向、大小和/或空间频率具有选择性。这些结果表明,V2细胞明确地代表复杂形状信息,并暗示了V2细胞从视觉场景中提取的特定类型的高阶视觉信息。