Assessment of Accuracy of Spatial Object Localization by Means of Mono and Stereo Modes of Visual-to-Auditory Sensory Substitution in People with Visual Impairments (a Pilot Study).

Sovremennye tekhnologii v meditsine Pub Date : 2024-01-01 Epub Date: 2024-08-30 DOI:10.17691/stm2024.16.4.03
A S Butorova, E A Koryukin, N M Khomenko, A P Sergeev
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Abstract

The aim of the study is to assess the accuracy of spatial object localization in mono and stereo modes of visual-to-auditory sensory substitution by means of the developed system tested on persons with normal or corrected-to-normal vision.

Materials and methods: A prototype of a visual-to-auditory sensory substitution device based on a video camera with two lenses was prepared. Software to convert the signal from a video camera into an audio signal in mono and stereo modes was developed.To assess the developed system, an experimental study with 30 blindfolded sighted participants was conducted. 15 persons were tested in mono mode, 15 - in stereo mode. All persons were trained to use the visual-to-auditory sensory substitution system. During the experiment, participants were to locate a white plastic cube with dimensions of 4×4×4 cm3 on a working surface. The researcher placed the cube in one of 20 positions on the working surface in a pseudo-random order.

Results: To assess the accuracy of the cube localization, deviations along the X- and Y-axes and absolute deviations were calculated. The general dynamics of localization accuracy was positive both in mono and stereo modes. Absolute deviation and X-axis deviation were significantly higher in stereo mode; there was no significant difference in Y-axis deviation between modes. On average, participants tended to underestimate the distance to the cube when it was on the left, right, or far side of the working surface, and overestimate the distance to the cube when it was on the near side of the working surface.

Conclusion: Tests demonstrated that the accuracy of object localization in stereo mode can be improved by increasing the time for training the participants and by showing them more presentations. The results of the study can be used to develop assistive techniques for people with visual impairments, to manufacture medical equipment, and create brain-computer interfaces.

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视觉障碍患者单声和立体视-听感觉替代对空间物体定位的准确性评估(一项初步研究)。
本研究的目的是评估在视觉-听觉感官替代的单一和立体模式下空间物体定位的准确性,通过开发的系统在正常或矫正到正常视力的人身上进行测试。材料与方法:制备了一种基于双镜头摄像机的视觉-听觉感官替代装置样机。开发了将摄像机信号转换为单声道和立体声模式的音频信号的软件。为了评估开发的系统,对30名被蒙住眼睛的视力正常的参与者进行了一项实验研究。15人在单声模式下接受测试,15人在立体声模式下接受测试。所有的人都被训练使用视觉到听觉的感觉替代系统。在实验中,参与者被要求在工作面上找到一个尺寸为4×4×4 cm3的白色塑料立方体。研究人员将立方体以伪随机的顺序放置在工作面上的20个位置中的一个。结果:为了评估立方体定位的准确性,计算了沿X轴和y轴的偏差和绝对偏差。在单声道和立体模式下,定位精度的总体动态都是正的。立体模式下的绝对偏差和x轴偏差显著增大;不同模式间y轴偏差无显著差异。平均而言,当立方体位于工作台面的左侧、右侧或远侧时,参与者倾向于低估与立方体的距离,而当立方体位于工作台面的近侧时,参与者倾向于高估与立方体的距离。结论:实验表明,通过增加被试的训练时间和展示更多的演示,可以提高立体模式下物体定位的准确性。这项研究的结果可用于为视力受损的人开发辅助技术,制造医疗设备,以及创建脑机接口。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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