Rieger Viola, Buntz Fabian, Feller Christian, Rothermel Albrecht
Annu Int Conf IEEE Eng Med Biol Soc. 2015;2015:6916-9. doi: 10.1109/EMBC.2015.7319983.
In this paper, a real-time system consisting of a camera device, computational unit and head mounted display, adjusted to the needs of patients using subretinal implants, is presented. Retinal implants demonstrated to partially restore useful vision to patients suffering from hereditary retinal degeneration diseases. Even though various implant-mediated visual perceptions in daily-life were reported, perceived vision could be enhanced using algorithms well known from image-processing. Due to strict area limitations subretinal implants can only cover well-chosen and carefully examined functionality within the silicon device. To gain flexibility in testing different kinds of image enhancement algorithms, a software solution allowing quick changes is desired. The system presented here, allows recording and displaying reality on a head mounted display with low latency, while maintaining true to scale representation. Additionally different types of pixel-based image-enhancement-algorithms can be applied on the captured content to modify the perceived image.
本文介绍了一种实时系统,该系统由相机设备、计算单元和头戴式显示器组成,是根据使用视网膜下植入物的患者的需求进行调整的。视网膜植入物已证明能部分恢复患有遗传性视网膜变性疾病患者的有用视力。尽管有报道称在日常生活中通过植入物介导产生了各种视觉感知,但利用图像处理中众所周知的算法可以增强感知到的视力。由于严格的面积限制,视网膜下植入物在硅器件内只能覆盖精心挑选和仔细检查的功能。为了在测试不同类型的图像增强算法时获得灵活性,需要一种允许快速更改的软件解决方案。这里介绍的系统允许在头戴式显示器上以低延迟记录和显示现实,同时保持按比例真实呈现。此外,可以对捕获的内容应用不同类型的基于像素的图像增强算法来修改感知到的图像。