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实验评估 EMKEY:一种上肢残疾人士的辅助技术。

Experimental Evaluation of EMKEY: An Assistive Technology for People with Upper Limb Disabilities.

机构信息

Centro de Investigación en Mecatrónica y Sistemas Interactivos-MIST, Universidad Indoamérica, Av. Machala y Sabanilla, Quito 170103, Ecuador.

Facultad de Psicología, Pontificia Universidad Católica del Ecuador, Av. 12 de Octubre y Roca, Quito 170143, Ecuador.

出版信息

Sensors (Basel). 2023 Apr 17;23(8):4049. doi: 10.3390/s23084049.

Abstract

Assistive technology can help people with disabilities to use computers more effectively and can enable them to access the same information and resources as people without disabilities. To obtain more insight into the factors that can bring about the design of an Emulator of Mouse and Keyboard (EMKEY) to higher levels of user satisfaction, an experimental study was conducted in order to analyse its effectiveness and efficiency. The experimental study involved 27 participants ( = 20.81, = 1.14) who performed three experimental games under different conditions (using the mouse and using EMKEY with head movements and voice commands). According to the results, the use of EMKEY allowed for the successful performance of tasks such as matching stimuli ( = 2.39, = 0.10, = 0.06). However, the execution times of a task were found to be higher when using the emulator to drag an object on the screen ( = -18.45, ≤ 0.001, = 9.60). These results indicate the effectiveness of technological development for people with upper limb disabilities; however, there is room for improvement in terms of efficiency. The findings are discussed in relation to previous research and are based on future studies aimed at improving the operation of the EMKEY emulator.

摘要

辅助技术可以帮助残疾人士更有效地使用计算机,并使他们能够访问与非残疾人士相同的信息和资源。为了更深入地了解可以提高鼠标和键盘仿真器(EMKEY)用户满意度的设计因素,进行了一项实验研究,以分析其有效性和效率。该实验研究涉及 27 名参与者(n=20.81,SD=1.14),他们在不同条件下(使用鼠标和使用头部运动和语音命令的 EMKEY)进行了三个实验游戏。根据结果,使用 EMKEY 可以成功执行匹配刺激等任务(M=2.39,SD=0.10,SE=0.06)。然而,当使用仿真器在屏幕上拖动对象时,执行任务的时间被发现更高(M=-18.45,p≤0.001,SE=9.60)。这些结果表明,对于上肢残疾人士来说,技术发展是有效的;然而,在效率方面还有改进的空间。这些发现与之前的研究有关,并基于旨在改进 EMKEY 仿真器操作的未来研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8c6/10144790/9f6b3aa3888a/sensors-23-04049-g001.jpg

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