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随机点目标的扫视定位

Saccadic localization of random dot targets.

作者信息

McGowan J W, Kowler E, Sharma A, Chubb C

机构信息

Department of Psychology, Rutgers University, New Brunswick, NJ 08903, USA.

出版信息

Vision Res. 1998 Mar;38(6):895-909. doi: 10.1016/s0042-6989(97)00232-0.

Abstract

The targets for saccadic eye movements in natural visual scenes are spatially extended objects, yet saccades land at a single position within them. To characterize the spatial transformation that determines the saccadic goal position within attended objects, we studied saccadic localization of large patterns of random dots. Saccades landed with a high degree of precision near the center-of-gravity of the patterns (average error < 10%; SDs around the center-of-gravity = 7-11% of target eccentricity). Predictions of landing position were improved by using a weighted center-of-gravity, in which the weight assigned to each dot was reduced by the presence of neighboring dots. Weighting based either on the eccentricity of dots or their position relative to the boundary of the pattern had no effect. The results can be accounted for by a spatial transformation in which the "local signs" of an initial array of detectors, weighted by the activity of each, are averaged to yield the saccadic goal. This model can account for accurate and precise saccadic localization of large targets, while preserving sensitivity to local pattern characteristics. Unlike models of recognition, the boundary of the object has the same status as the internal details.

摘要

在自然视觉场景中,眼球快速跳动的目标是空间上扩展的物体,但快速眼动会落在这些物体内的单个位置上。为了描述决定在被关注物体内快速眼动目标位置的空间转换,我们研究了大随机点图案的快速眼动定位。快速眼动高度精确地落在图案的重心附近(平均误差<10%;重心周围的标准差=目标偏心度的7-11%)。通过使用加权重心来改进着陆位置的预测,其中分配给每个点的权重会因相邻点的存在而降低。基于点的偏心度或其相对于图案边界的位置进行加权没有效果。这些结果可以通过一种空间转换来解释,在这种转换中,由每个探测器的活动加权的初始探测器阵列的“局部标记”被平均以产生快速眼动目标。该模型可以解释大目标的准确和精确的快速眼动定位,同时保持对局部图案特征的敏感性。与识别模型不同,物体的边界与内部细节具有相同的地位。

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