一种新的可重构盲文动态触觉显示:实现与测试。

Frontiers in neuroengineering Pub Date : 2014-04-08 eCollection Date: 2014-01-01 DOI:10.3389/fneng.2014.00006
Paolo Motto Ros, Vittorio Dante, Luca Mesin, Erminio Petetti, Paolo Del Giudice, Eros Pasero
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引用次数: 19

摘要

已经提出了不同的触觉界面来表示文本(盲文),或者在少数情况下,触觉大面积屏幕作为视觉显示的替代品。到目前为止,没有一种实现可以根据用户的偏好、感知差异和技能进行定制。在这些方面的最佳选择仍然存在争议;我们通过设计一个灵活的设备来解决这个问题,允许用户选择触觉转导的关键参数。我们在这里提出了一种新的动态触觉显示器,一种基于成熟可靠的压电技术的8 × 8塑料引脚矩阵,可提供高分辨率(引脚间隙0.7mm)以及引脚位移强度可调,刷新率高达50(-1)。它可以复制任意模式,允许它服务于双重目的,根据偶然的用户需求,提供非字符信息的触觉呈现和可重构的盲文呈现。考虑到后一种功能与预期的普通用户的相关性,我们认为由志愿者测试盲文编码是最重要的基准。进行测试是为了在最少的训练下评估接受度和可用性,并检查所提供的灵活性是否确实被受试者视为与传统盲文设备相比的附加价值。盲点和实际触觉针之间的不同映射实现以满足用户需求。八个有经验的盲文读者的表现被定义为正确识别呈现内容的分数。对不同的信息内容进行测试(随机字符串、单词、句子识别的中位数分别约为75%、85%、98%,均有显著提高,p < 0.01),测试期间的性能提高具有统计学意义(p < 0.05)。实验结果以及受试者提供的定性评分表明,所提出的解决方案具有良好的可接受性和有效性。
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A new dynamic tactile display for reconfigurable braille: implementation and tests.

Different tactile interfaces have been proposed to represent either text (braille) or, in a few cases, tactile large-area screens as replacements for visual displays. None of the implementations so far can be customized to match users' preferences, perceptual differences and skills. Optimal choices in these respects are still debated; we approach a solution by designing a flexible device allowing the user to choose key parameters of tactile transduction. We present here a new dynamic tactile display, a 8 × 8 matrix of plastic pins based on well-established and reliable piezoelectric technology to offer high resolution (pin gap 0.7mm) as well as tunable strength of the pins displacement, and refresh rate up to 50s(-1). It can reproduce arbitrary patterns, allowing it to serve the dual purpose of providing, depending on contingent user needs, tactile rendering of non-character information, and reconfigurable braille rendering. Given the relevance of the latter functionality for the expected average user, we considered testing braille encoding by volunteers a benchmark of primary importance. Tests were performed to assess the acceptance and usability with minimal training, and to check whether the offered flexibility was indeed perceived by the subject as an added value compared to conventional braille devices. Different mappings between braille dots and actual tactile pins were implemented to match user needs. Performances of eight experienced braille readers were defined as the fraction of correct identifications of rendered content. Different information contents were tested (median performance on random strings, words, sentences identification was about 75%, 85%, 98%, respectively, with a significant increase, p < 0.01), obtaining statistically significant improvements in performance during the tests (p < 0.05). Experimental results, together with qualitative ratings provided by the subjects, show a good acceptance and the effectiveness of the proposed solution.

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