使用ScanMatch分数来理解正确和错误解决物理问题者的眼球运动差异

Adrian M. Madsen, Adam M. Larson, Lester C. Loschky, N. S. Rebello
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引用次数: 17

摘要

使用扫描匹配算法,我们研究了正确和错误回答物理问题的受试者之间的扫描路径差异。该算法在空间和时间上对一个扫视序列进行分类,对这些信息进行编码以创建一个表示注视位置、持续时间和顺序的字母序列,并对两个序列进行比较以生成相似度分数。我们记录了24个人在六个物理问题上的眼球运动,这些问题包含了与新手反应一致的区域和高度感知显著的区域。我们计算了ScanMatch的平均相似度分数,将正确解算者与另一个解算者(C-C)、错误解算者与另一个解算者(I-I)以及正确解算者与不正确解算者(C-I)进行比较。我们发现C-C和I-I之间只有一个问题存在统计学上的显著差异。这似乎意味着,依赖于错误领域知识的自上而下的过程,而不是由感知显著性驱动的自下而上的过程,决定了错误求解者的眼球运动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Using ScanMatch scores to understand differences in eye movements between correct and incorrect solvers on physics problems
Using a ScanMatch algorithm we investigate scan path differences between subjects who answer physics problems correctly and incorrectly. This algorithm bins a saccade sequence spatially and temporally, recodes this information to create a sequence of letters representing fixation location, duration and order, and compares two sequences to generate a similarity score. We recorded eye movements of 24 individuals on six physics problems containing diagrams with areas consistent with a novice-like response and areas of high perceptual salience. We calculated average ScanMatch similarity scores comparing correct solvers to one another (C-C), incorrect solvers to one another (I-I), and correct solvers to incorrect solvers (C-I). We found statistically significant differences between the C-C and I-I comparisons on only one of the problems. This seems to imply that top down processes relying on incorrect domain knowledge, rather than bottom up processes driven by perceptual salience, determine the eye movements of incorrect solvers.
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