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Visually Augmented Audio-Tactile Graphics for Visually Impaired People

机译:视障人士的视觉增强型音频触觉图形

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Tactile graphics play an essential role in knowledge transfer for blind people. The tactile exploration of these graphics is often challenging because of the cognitive load caused by physiological constraints and their complexity. The coupling of physical tactile graphics with electronic devices offers to support the tactile exploration by auditory feedback. Often, these systems have strict constraints regarding their mobility or the process of coupling both components. Additionally, visually impaired people cannot appropriately benefit from their residual vision. This article presents a concept for 3D printed tactile graphics, which offers to use audio-tactile graphics with usual smartphones or tablet-computers. By using capacitive markers, the coupling of the tactile graphics with the mobile device is simplified. These tactile graphics integrating these markers can be printed in one turn by off-the-shelf 3D printers without any post-processing and allows us to use multiple elevation levels for graphical elements. Based on the developed generic concept on visually augmented audio-tactile graphics, we presented a case study for maps. A prototypical implementation was tested by a user study with visually impaired people. All the participants were able to interact with the 3D printed tactile maps using a standard tablet computer. To study the effect of visual augmentation of graphical elements, we conducted another comprehensive user study. We tested multiple types of graphics and obtained evidence that visual augmentation may offer clear advantages for the exploration of tactile graphics. Even participants with a minor residual vision could solve the tasks with visual augmentation more quickly and accurately.
机译:触觉图形在盲人的知识转移中起着至关重要的作用。由于生理限制及其复杂性导致的认知负担,对这些图形的触觉探索通常具有挑战性。物理触觉图形与电子设备的耦合可通过听觉反馈来支持触觉探索。通常,这些系统在其移动性或耦合两个组件的过程方面都有严格的限制。另外,视力障碍的人不能适当地从他们的残余视力中受益。本文介绍了3D打印触觉图形的概念,该概念提供了将声触图形用于普通的智能手机或平板电脑。通过使用电容性标记,可简化触觉图形与移动设备的耦合。这些集成了这些标记的触觉图形可以通过现成的3D打印机一圈打印,而无需任何后处理,并允许我们对图形元素使用多个高程级别。基于已开发的关于视觉增强型音频触觉图形的通用概念,我们提出了地图案例研究。通过对视障人士进行的用户研究测试了原型实现。所有参与者都可以使用标准平板电脑与3D打印的触觉图进行交互。为了研究图形元素的视觉增强效果,我们进行了另一项全面的用户研究。我们测试了多种类型的图形,并获得证据表明视觉增强可以为触觉图形的探索提供明显的优势。即使是残视力较弱的参与者也可以更快,更准确地解决视觉增强问题。

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