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基于触觉感知的模拟光点大小估计。

Estimation of simulated phosphene size based on tactile perception.

机构信息

Department of Biomedical Engineering, School of Life Sciences & Biotechnology, Shanghai Jiao Tong University, Shanghai, China.

出版信息

Artif Organs. 2012 Jan;36(1):115-20. doi: 10.1111/j.1525-1594.2011.01288.x. Epub 2011 Aug 2.

Abstract

Clinical trials have successfully shown that a visual prosthesis can elicit visual perception (phosphenes) in the visual field. Psychophysical studies based on simulated prosthetic vision offer an effective means to evaluate and refine prosthetic vision. We designed three experiments to examine the effect of phosphene luminance, flicker rate, and eccentricity on the ability to estimate simulated phosphene sizes using tactile perception. Thirty subjects participated in the three experiments. There was a linear increase in reported size as visual stimulus size increased. Judgment was significantly affected by stimulus luminance and eccentricity (P < 0.05) but not by flicker rates. Brighter stimuli were perceived as being larger, and the more eccentric the position, the larger the estimated size. These simulation studies, although idealized, suggested that tactile perception is a potential way to estimate phosphene sizes.

摘要

临床试验已经成功证明,视觉假体可以在视野中产生视觉感知(光幻视)。基于模拟假体视觉的心理物理学研究为评估和优化假体视觉提供了有效的手段。我们设计了三个实验,以研究光幻视亮度、闪烁频率和偏心度对使用触觉感知估计模拟光幻视大小的能力的影响。30 名受试者参加了这三个实验。随着视觉刺激大小的增加,报告的大小呈线性增加。判断显著受到刺激亮度和偏心度的影响(P<0.05),但不受闪烁频率的影响。更亮的刺激被感知为更大,位置越偏心,估计的尺寸越大。这些模拟研究虽然理想化,但表明触觉感知是估计光幻视大小的一种潜在方法。

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