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Novel color filters for the correction of red-green color vision deficiency based on the localized surface plasmon resonance effect of Au nanoparticles

机译:基于Au纳米粒子的局部表面等离子体共振效应,进行红绿视觉缺陷的新型滤色器

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摘要

Color filters are promising tools for the correction of color vision deficiency because a medical cure of this physiological deficiency is unattainable. After the introduction of organic-dye based color filters, however, no appreciable progress has been made. In this study, gold nanoparticle-based plasmonic color filter devices, that is, EyEye-lens and EyEye-film, were developed for the correction of color vision deficiency. The EyEye-lens was prepared by a simple immobilizing technique, and the EyEye-film was readily synthesized through a one-pot method. These color filter devices are based on tunable localized surface plasmon resonance in the visible and near-infrared spectral range. Plasmonic nanoparticles embedded in the color filter provide a specific spectral color range for the correction of color vision deficiency. Careful color vision tests using an Ishihara plate were performed on subjects with red-green color deficiency. Statistical analysis of the color vision tests revealed that the EyEye-lens and EyEye-film have similar or better performance in the correction of red-green color deficiency than a commercial ChromaGen lens. The newly developed color filter devices should be considered as alternative personalized color filter devices for practical applications.
机译:滤色器是有希望的校正颜色视觉缺乏的工具,因为这种生理缺乏的医学治愈是无法实现的。然而,在引入基于有机染料的滤色器后,没有明显进展。在该研究中,为校正颜色视觉缺陷的校正,开发了基于金纳米粒子的等离子体滤色器装置,即Eyeye-eBab和Eyeye膜。通过一种简单的固定技术制备Eyeye-透镜,通过单罐方法容易地合成眼睛膜。这些滤色器件基于可视化和近红外光谱范围的可调局部表面等离子体共振。嵌入在滤色器中的等离子体纳米颗粒提供了校正颜色视觉缺陷的特定光谱颜色范围。使用Ishihara板的仔细颜色视觉试验在具有红绿缺乏症的受试者进行。颜色视觉试验的统计分析显示,Eyeye-emps和Eyeye-薄膜在校正比商业染色体透镜的校正中具有相似或更好的性能。新开发的滤色器设备应视为实际应用的替代个性化滤色器设备。

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