MAP3D:一种在虚拟3D模型上自动映射真实世界眼动追踪数据的探索性方法

IF 1.3 4区 心理学 Q3 OPHTHALMOLOGY
Journal of Eye Movement Research Pub Date : 2023-05-31 eCollection Date: 2022-01-01 DOI:10.16910/jemr.15.3.8
Isabell Stein, Helen Jossberger, Hans Gruber
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引用次数: 0

摘要

移动眼动追踪有助于调查真实世界的环境,参与者可以在其中自由移动。这增强了研究的生态有效性,但对分析提出了挑战。通常,3D刺激被简化为2D图像(参考视图),并且注视被手动映射到该2D图像。这导致了关于刺激的三维性的信息的丢失。从不同的角度使用几个参考图像会带来新的问题,特别是在两个参考视图之间的过渡区域中的注视映射方面。提出了一种新开发的方法(MAP3D),该方法能够生成3D模型并将注视自动映射到该刺激的虚拟3D模型。这避免了减少到2D参考图像和图像之间的转换的问题。固定点的x、y和z坐标可作为点云和.csv输出。首次探索性应用和评估测试很有希望:MAP3D通过开源软件为3D刺激的事后映射固定数据提供了创新的方法,从而为研究提供了经济高效的新途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MAP3D: An explorative approach for automatic mapping of real-world eye-tracking data on a virtual 3D model.

Mobile eye tracking helps to investigate real-world settings, in which participants can move freely. This enhances the studies' ecological validity but poses challenges for the analysis. Often, the 3D stimulus is reduced to a 2D image (reference view) and the fixations are manually mapped to this 2D image. This leads to a loss of information about the three-dimensionality of the stimulus. Using several reference images, from different perspectives, poses new problems, in particular concerning the mapping of fixations in the transition areas between two reference views. A newly developed approach (MAP3D) is presented that enables generating a 3D model and automatic mapping of fixations to this virtual 3D model of the stimulus. This avoids problems with the reduction to a 2D reference image and with transitions between images. The x, y and z coordinates of the fixations are available as a point cloud and as .csv output. First exploratory application and evaluation tests are promising: MAP3D offers innovative ways of post-hoc mapping fixation data on 3D stimuli with open-source software and thus provides cost-efficient new avenues for research.

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来源期刊
CiteScore
2.90
自引率
33.30%
发文量
10
审稿时长
10 weeks
期刊介绍: The Journal of Eye Movement Research is an open-access, peer-reviewed scientific periodical devoted to all aspects of oculomotor functioning including methodology of eye recording, neurophysiological and cognitive models, attention, reading, as well as applications in neurology, ergonomy, media research and other areas,
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