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Effects of Stereo and Screen Size on the Legibility of Three-Dimensional Streamtube Visualization

机译:三维可视化streamtube的可读性立体声和屏幕尺寸的影响。

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摘要

We report the impact of display characteristics (stereo and size) on task performance in diffusion magnetic resonance imaging (DMRI) in a user study with 12 participants. The hypotheses were that (1) adding stereo and increasing display size would improve task accuracy and reduce completion time, and (2) the greater the complexity of a spatial task, the greater the benefits of an improved display. Thus we expected to see greater performance gains when detailed visual reasoning was required. Participants used dense streamtube visualizations to perform five representative tasks: (1) determine the higher average fractional anisotropy (FA) values between two regions, (2) find the endpoints of fiber tracts, (3) name a bundle, (4) mark a brain lesion, and (5) judge if tracts belong to the same bundle. Contrary to our hypotheses, we found the task completion time was not improved by the use of the larger display and that performance accuracy was hurt rather than helped by the introduction of stereo in our study with dense DMRI data. Bigger was not always better. Thus cautious should be taken when selecting displays for scientific visualization applications. We explored the results further using the body-scale unit and subjective size and stereo experiences.
机译:我们在12名参与者的用户研究中报告了显示特征(立体和大小)对任务性能在扩散磁共振成像(DMRI)中的影响。假设是(1)添加立体声并增加显示尺寸将提高任务的准确性并减少完成时间,并且(2)空间任务的复杂性越大,改进显示的好处就越大。因此,当需要详细的视觉推理时,我们期望看到更大的性能提升。参与者使用密集的流线可视化来执行五项代表性任务:(1)确定两个区域之间较高的平均分数各向异性(FA)值,(2)查找纤维束的端点,(3)命名束,(4)标记a (5)判断道是否属于同一束。与我们的假设相反,我们发现使用较大的显示器并不能改善任务的完成时间,并且在我们的研究中使用密集的DMRI数据引入立体声不会对性能准确性造成损害,而不是有所帮助。更大并不总是更好。因此,在选择用于科学可视化应用程序的显示器时应格外小心。我们使用人体秤单位,主观大小和立体声经验进一步探索了结果。

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