Sakata Hideo, Tsutsui Ken-Ichiro, Taira Masato
Department of Physiology, Nihon University School of Medicine, 30-1 Oyaguchi-Kamimachi, Itabashi-ku, Tokyo 173-8610, Japan.
Neuropsychologia. 2005;43(2):151-61. doi: 10.1016/j.neuropsychologia.2004.11.003. Epub 2005 Jan 7.
In this article we address the major issue of space vision, how the brain represents the 3D shape of objects in the real world, on the basis of psychophysics and neurophysiology. In psychophysics, Gibson found texture gradients and width gradients, as well as the gradient of binocular disparity, as the major cues for surface orientation in depth. Marr proposed that a surface-based representation is the main step towards 3D shape representation. In our neurophysiological studies of the monkey parietal cortex, we have found visual-dominant neurons in area AIP with selectivity in 3D shape of the objects, and also surface-orientation-selective (SOS) neurons in the caudal intraparietal (CIP) area. SOS neurons responded selectively to surface orientation in depth presented in random dot stereograms with a disparity gradient. Many of the SOS neurons responded selectively also to texture gradients and linear perspective, and their responses were enhanced by the combination of these cues. We also found axis-orientation-selective (AOS) neurons in area CIP, responding selectively to the orientation of the longitudinal axis of elongated objects in depth. We present preliminary data here to demonstrate that some of AOS neurons that prefer intermediate thickness are shape-selective, and they are likely to discriminate surface curvature. These data suggest that neurons in and around area CIP may have the capacity to represent 3D shape.
在本文中,我们基于心理物理学和神经生理学,探讨空间视觉的主要问题,即大脑如何在现实世界中表征物体的三维形状。在心理物理学方面,吉布森发现纹理梯度、宽度梯度以及双眼视差梯度是深度上表面方向的主要线索。马尔提出基于表面的表征是迈向三维形状表征的主要步骤。在我们对猴子顶叶皮层的神经生理学研究中,我们在AIP区域发现了对物体三维形状具有选择性的视觉主导神经元,以及在尾侧顶内沟(CIP)区域的表面方向选择性(SOS)神经元。SOS神经元对具有视差梯度的随机点立体图中呈现的深度表面方向有选择性反应。许多SOS神经元对纹理梯度和线性透视也有选择性反应,并且这些线索的组合会增强它们的反应。我们还在CIP区域发现了轴方向选择性(AOS)神经元,它们对深度上细长物体纵轴的方向有选择性反应。我们在此展示初步数据,以证明一些偏好中等厚度的AOS神经元具有形状选择性,并且它们可能能够区分表面曲率。这些数据表明CIP区域及其周围的神经元可能具有表征三维形状的能力。