Liter J C, Braunstein M L
Department of Cognitive Sciences, School of Social Sciences, University of California, Irvine 92697-5100, USA.
J Exp Psychol Hum Percept Perform. 1998 Aug;24(4):1257-72. doi: 10.1037//0096-1523.24.4.1257.
Perceived shape, rotation, and rigidity were investigated in displays with linear velocity gradients in the vertical and horizontal directions. Different temporal relationships between these gradients simulated perspective projections of frontally oriented or rotated translating dihedral angles, orthographic projections of rotating dihedral angles, or nonrigid motion. Displays with nonzero horizontal gradients were judged to represent greater angle magnitudes (less relative depth) than displays with 0 horizontal gradients. The temporal relationship between the vertical and horizontal gradients did not influence judged shape but did affect rotation and rigidity judgments; rigid rotations were judged to rotate most, and nonrigid displays were rated as least rigid. These results indicate that the visual system integrates information from more than 1 velocity field. Possible integration methods based on first-order optic flow analysis are discussed.
在具有垂直和水平方向线性速度梯度的显示中,对感知形状、旋转和刚性进行了研究。这些梯度之间不同的时间关系模拟了正面定向或旋转平移二面角的透视投影、旋转二面角的正投影或非刚性运动。与水平梯度为0的显示相比,水平梯度不为0的显示被判断为代表更大的角度大小(相对深度更小)。垂直和水平梯度之间的时间关系不影响形状判断,但会影响旋转和刚性判断;刚性旋转被判断为旋转最多,非刚性显示被评为刚性最小。这些结果表明,视觉系统整合了来自多个速度场的信息。讨论了基于一阶光流分析的可能整合方法。