The timing of sequences of saccades in visual search

E. Loon, I. Hooge, A. V. Berg
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引用次数: 41

Abstract

According to the LATER model (linear approach to thresholds with ergodic rate), the latency of a single saccade in response to target appearance can be understood as a decision process, which is subject to (i) variations in the rate of (visual) information processing; and (ii) the threshold for the decision. We tested whether the LATER model can also be applied to the sequences of saccades in a multiple fixation search, during which latencies of second and subsequent saccades are typically shorter than that of the initial saccade. We found that the distributions of the reciprocal latencies for later saccades, unlike those of the first saccade, are highly asymmetrical, much like a gamma distribution. This suggests that the normal distribution of the rate r, which the LATER model assumes, is not appropriate to describe the rate distributions of subsequent saccades in a scanning sequence. By contrast, the gamma distribution is also appropriate to describe the distribution of reciprocal latencies for the first saccade. The change of the gamma distribution parameters as a function of the ordinal number of the saccade suggests a lowering of the threshold for second and later saccades, as well as a reduction in the number of target elements analysed.
视觉搜索中扫视序列的时序
根据LATER模型(遍历率阈值的线性方法),单个扫视响应目标外观的延迟可以理解为一个决策过程,该过程受(视觉)信息处理速率的变化的影响;(ii)决策的阈值。我们测试了LATER模型是否也可以应用于多次注视搜索中的扫视序列,在此过程中,第二次和随后的扫视潜伏期通常比第一次扫视的潜伏期短。我们发现,与第一次扫视不同,后一次扫视的倒数潜伏期分布是高度不对称的,很像伽马分布。这表明,迟延模型所假定的速率r的正态分布并不适合描述扫描序列中后续扫视的速率分布。相反,伽马分布也适合于描述第一次扫视的倒数延迟分布。伽玛分布参数作为眼跳序数的函数的变化表明,第二次和以后的眼跳阈值降低了,所分析的目标元素数量也减少了。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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