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Use of a spectrally-tunable source to explore improvement in chromatic contrast for illumination of tissues

机译:使用光谱可调源来探讨组织照明的色度对比度的改进

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Human vision by a clinical practitioner is often the first disease detection tool. Illumination for such procedures as endoscopy use broadband white light, with luminance level being the only control available. The use of staining dyes for contrast improvement have shown limited adoption due to the additional steps needed and small number of approved dyes for in vivo use. Here we explore the control of the illuminant spectral distribution to improve chromatic contrast without the use of dyes. The computational steps used in converting spectral data to RGB and use of the CIELAB chromatic and luminance contrast metric as criteria in determining the appropriate lighting spectral distribution will be discussed. The skin on the back of the hand and the skin section over a vein are used as examples of tissue features to be contrasted. A 3-wavelelength LED lamp and an incandescent lamp with the yellow spectral region filtered out are shown as examples that spectrally-shaped illumination can enhance visual contrast.
机译:临床从业者的人类愿景往往是第一款疾病检测工具。作为内窥镜检查的这种程序的照明使用宽带白光,亮度水平是唯一可用的控制。由于在体内使用的额外步骤和少量批准的染料中,使用染色染料用于对比改善的用途已经有限的采用。在这里,我们探讨了光源光谱分布的控制,以改善无需染料的色度对比度。将讨论将频谱数据转换为RGB的频谱数据和使用CIELAB色和亮度对比度量作为确定适当的照明光谱分布的标准。手背上的皮肤和静脉上的皮肤部分用作形成对比的组织特征的实例。具有滤除的3波纹LED灯和具有黄光谱区域的白炽灯作为示例,光谱形状照明可以增强视觉对比度。

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