Allik J, Tuulmets T
Department of Psychology, University of Tartu, Estonia.
Percept Psychophys. 1993 Apr;53(4):450-9. doi: 10.3758/bf03206789.
Numerosity discrimination was examined when items were varied in space-time position rather than in space only. Observers were instructed to indicate which of two adjacent streams of visual events contained more items. The precision of numerosity discrimination of dynamic events was not remarkably different from that of static patterns. Two basic numerosity biases previously found for static dot patterns--inhibitory overestimation and satellite underestimation--were demonstrated for items distributed randomly over a spatiotemporal interval. It was also demonstrated that two streams, equated in the number and luminous energy of items, are not judged equal in their visible number if items in one of these two streams have longer duration than items in the second stream. These findings can be accounted for by the occupancy model of perceived numerosity (Allik & Tuulmets, 1991a) if it is supposed that the impact that each element has on its neighborhood is spread along both spatial and temporal coordinates. Perceived numerosity decreases with both spatial and temporal proximity between the visual items. Space and time have interchangeable effects on perceived numerosity: the amount of numerosity bias caused by the spatial proximity of items can also be produced by the properly chosen temporal proximity of items.
当项目在时空位置而非仅在空间上变化时,对数量辨别进行了研究。观察者被要求指出两个相邻的视觉事件流中哪一个包含更多项目。动态事件数量辨别的精度与静态模式的精度没有显著差异。先前在静态点模式中发现的两种基本数量偏差——抑制性高估和卫星低估——在随机分布于时空间隔的项目中得到了证明。还证明了,如果两个流中的项目数量和发光能量相等,但其中一个流中的项目持续时间比另一个流中的项目长,那么在可见数量上它们不会被判断为相等。如果假设每个元素对其邻域的影响沿着空间和时间坐标传播,那么这些发现可以用感知数量的占有率模型(Allik & Tuulmets,1991a)来解释。感知数量随着视觉项目之间的空间和时间接近度而降低。空间和时间对感知数量有可互换的影响:项目空间接近度引起的数量偏差量也可以由适当选择的项目时间接近度产生。