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首页> 外文期刊>Artificial Organs >Study of tactile perception based on phosphene positioning using simulated prosthetic vision.
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Study of tactile perception based on phosphene positioning using simulated prosthetic vision.

机译:基于定位的模拟假肢视觉研究触觉。

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摘要

In recent years, as stimulation electrodes have been implanted in the visual cortex, optic nerve, and retina to generate visual perceptions (phosphenes), the research on prosthetic vision has become a popular topic. After implantation, it is crucial to evaluate the characteristics of the stimulated phosphenes. Until now, several methods using tactile perception are proposed to describe the phosphene position, but no systematic study of the perceptional behavior has been performed. Here, an experimental study of tactile perception based on phosphene positioning was proposed using simulated prosthetic vision. Results show that the dispersion was smaller and the response time was less when phosphenes are generated in near visual field compared to the far visual field. The dispersion, the accuracy, and the response speed were better when using the visual guide. Moreover, the widely used method of using the left hand as reference and the right hand to point the phosphene may cause geographic error.
机译:近年来,随着刺激电极被植入到视觉皮层,视神经和视网膜中以产生视觉知觉(phosph),对假肢视觉的研究已成为热门话题。植入后,评估受激膦的特性至关重要。到目前为止,提出了几种使用触觉感知的方法来描述膦位置,但是尚未对感知行为进行系统的研究。在这里,使用模拟假肢视觉提出了基于定位的触觉感知的实验研究。结果表明,与远视场相比,在近视场中生成膦时,分散度较小,响应时间更短。使用视觉指南时,色散,准确性和响应速度更好。此外,使用左手作为参考并用右手指出膦的广泛使用的方法可能会导致地理误差。

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