可刷新盲文和触觉图形的生物力学考虑因素,实现平等无障碍:综述。

IF 1.7 4区 医学 Q4 BIOPHYSICS
Anne D Zakrajsek, Samuel Foulkes, Nicole Nagel, Fred Neurohr, Eric A Nauman
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引用次数: 0

摘要

本综述在盲人和低视力群体信息获取设计创新的背景下,重点介绍了盲文和触觉图形辨别的生物力学基础。盲文辨别是一个复杂且鲜为人知的过程,需要协调运动控制、机械传导和认知语言处理。尽管在过去的五十年中,技术取得了长足的进步,并进行了多次设计尝试,但低成本、高保真、可刷新的盲文和触觉图形显示器仍未问世。因此,盲人和低视力群体获取信息的选择非常有限。随着图形用户界面在人机交互中的迅速普及,盲人和低视力人群实际上被排除在了这一领域之外。文本到语音的屏幕阅读器无法传达科学、技术、工程、艺术和数学教育所需的细微差别,为用户提供的隐私也很有限。印刷盲文和触觉图形是有效的模式,但需要耗费大量时间和资源,难以获取,而且缺乏实时渲染。单行和多行可刷新盲文设备要么缺乏功能,要么成本极高。本研究探讨了通过复杂的数字皮肤组织进行机械传导的早期计算模型,以及盲文阅读手指的运动学,以深入了解设备的设计规范。讨论了未来设计以使用为中心的融合方法,其中设计空间由最终用户需求和现有技术共同决定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biomechanical Considerations of Refreshable Braille and Tactile Graphics Toward Equitable Access: A Review.

This review highlights the biomechanical foundations of braille and tactile graphic discrimination within the context of design innovations in information access for the blind and low-vision community. Braille discrimination is a complex and poorly understood process that necessitates the coordination of motor control, mechanotransduction, and cognitive-linguistic processing. Despite substantial technological advances and multiple design attempts over the last fifty years, a low-cost, high-fidelity refreshable braille and tactile graphics display has yet to be delivered. Consequently, the blind and low-vision communities are left with limited options for information access. This is amplified by the rapid adoption of graphical user interfaces for human-computer interaction, a move that the blind and low vision community were effectively excluded from. Text-to-speech screen readers lack the ability to convey the nuances necessary for science, technology, engineering, arts, and math education and offer limited privacy for the user. Printed braille and tactile graphics are effective modalities but are time and resource-intensive, difficult to access, and lack real-time rendering. Single- and multiline refreshable braille devices either lack functionality or are extremely cost-prohibitive. Early computational models of mechanotransduction through complex digital skin tissue and the kinematics of the braille reading finger are explored as insight into device design specifications. A use-centered, convergence approach for future designs is discussed in which the design space is defined by both the end-user requirements and the available technology.

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来源期刊
CiteScore
3.40
自引率
5.90%
发文量
169
审稿时长
4-8 weeks
期刊介绍: Artificial Organs and Prostheses; Bioinstrumentation and Measurements; Bioheat Transfer; Biomaterials; Biomechanics; Bioprocess Engineering; Cellular Mechanics; Design and Control of Biological Systems; Physiological Systems.
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