Uttal W R, Spillmann L, Stürzel F, Sekuler A B
Brain Research Unit, University of Freiburg, Germany.
Vision Res. 2000;40(3):301-10. doi: 10.1016/s0042-6989(99)00177-7.
We determined how much motion coherence was needed to detect a target group of four moving dots in a dynamic visual noise (DVN) background. The lifetimes of the trajectories of the target and that of the noise dots were the same. In addition to parallel trajectories and collinear dot arrangements, divergent, convergent, or crossing trajectories and non-collinear dot arrangements were also tested. Performance saturated at a lifetime of approximately 600 ms. It was best for parallel trajectories and collinear dots, and worse for crossed trajectories with non-collinear dots, where it approached performance in a no-motion, form-only control experiment. Results illustrate the importance of common fate in motion perception in DVN, when other factors are equated.
我们确定了在动态视觉噪声(DVN)背景中检测由四个移动点组成的目标组时所需的运动连贯性程度。目标点和噪声点轨迹的持续时间相同。除了平行轨迹和共线点排列外,还测试了发散、汇聚或交叉轨迹以及非共线点排列。在大约600毫秒的持续时间时,性能达到饱和。对于平行轨迹和共线点效果最佳,对于交叉轨迹和非共线点效果较差,在无运动、仅形状的对照实验中其性能与之相近。结果表明,当其他因素相同时,共同命运在DVN运动感知中的重要性。