Wang Quan, Kim Elizabeth, Chawarska Katarzyna, Scassellati Brian, Zucker Steven, Shic Frederick
Child Study Center, Yale University.
Department of Computer Science, Yale University.
Proc Eye Track Res Appl Symp. 2014 Mar;2014:67-74. doi: 10.1145/2578153.2578161.
Fixation identification algorithms facilitate data comprehension and provide analytical convenience in eye-tracking analysis. However, current fixation algorithms for eye-tracking analysis are heavily dependent on parameter choices, leading to instabilities in results and incompleteness in reporting. This work examines the nature of human scanning patterns during complex scene viewing. We show that standard implementations of the commonly used distance-dispersion algorithm for fixation identification are functionally equivalent to greedy spatiotemporal tiling. We show that modeling the number of fixations as a function of tiling size leads to a measure of fractal dimensionality through box counting. We apply this technique to examine scale-free gaze behaviors in toddlers and adults looking at images of faces and blocks, as well as large number of adults looking at movies or static images. The distributional aspects of the number of fixations may suggest a fractal structure to gaze patterns in free scanning and imply that the incompleteness of standard algorithms may be due to the scale-free behaviors of the underlying scanning distributions. We discuss the nature of this hypothesis, its limitations, and offer directions for future work.
注视识别算法有助于数据理解,并在眼动追踪分析中提供分析便利。然而,当前用于眼动追踪分析的注视算法严重依赖参数选择,导致结果不稳定且报告不完整。这项工作研究了复杂场景观看过程中人类扫描模式的本质。我们表明,用于注视识别的常用距离-离散算法的标准实现与贪婪时空平铺在功能上等效。我们表明,将注视次数建模为平铺大小的函数会通过盒计数产生分形维数的度量。我们应用这项技术来检查幼儿和成人在观看面部和积木图像时以及大量成人在观看电影或静态图像时的无标度注视行为。注视次数的分布方面可能表明自由扫描中的注视模式具有分形结构,并暗示标准算法的不完整性可能是由于基础扫描分布的无标度行为。我们讨论了这一假设的本质、其局限性,并为未来的工作提供了方向。