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Using fNIRS Brain Sensing to Evaluate Information Visualization Interfaces

机译:使用FNIRS脑感测量来评估信息可视化接口

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We show how brain sensing can lend insight to the evaluation of visual interfaces and establish a role for fNIRS in visualization. Research suggests that the evaluation of visual design benefits by going beyond performance measures or questionnaires to measurements of the user's cognitive state. Unfortunately, objectively and unobtrusively monitoring the brain is difficult. While functional near-infrared spectroscopy (fNIRS) has emerged as a practical brain sensing technology in HCI, visual tasks often rely on the brain's quick, massively parallel visual system, which may be inaccessible to this measurement. It is unknown whether fNIRS can distinguish differences in cognitive state that derive from visual design alone. In this paper, we use the classic comparison of bar graphs and pie charts to test the viability of fNIRS for measuring the impact of a visual design on the brain. Our results demonstrate that we can indeed measure this impact, and furthermore measurements indicate that there are not universal differences in bar graphs and pie charts.
机译:我们展示脑传感如何能够对视觉界面的评估提供洞察,并在可视化中建立Fnirs的作用。研究表明,通过超越性能措施或调查问卷对用户的认知状态进行测量来评估视觉设计的效益。不幸的是,客观和不引人注目地监测大脑是困难的。虽然功能近红外光谱(FNIR)作为HCI的实用脑传感技术出现,但是视觉任务通常依赖于大脑的快速,大规模平行的视觉系统,这可能无法访问该测量。它尚不清楚Fnirs是否可以区分来自视觉设计的认知状态的差异。在本文中,我们使用条形图和饼图的经典比较来测试Fnirs的可行性,以测量视觉设计对大脑的影响。我们的结果表明,我们确实可以测量这种影响,并且还测量表明条形图和饼图没有普遍差异。

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