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Illuminating the optical properties of an LED-based spectral light source for hyperspectral endoscopy

机译:照亮基于LED的光谱光源的光学特性进行高光谱内窥镜检查

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In the United States, the gold standard for endoscopic screening is white light endoscopy (WLE) which uses a singular broad spectrum light source to illuminate the colorectum. However, WLE provides minimal contrast to small, flat or early growth lesions compared to the surrounding mucosa, in turn, increasing the miss rate of these lesions allowing for further growth of potentially fatal cancer (colorectal cancer is the 3rd highest risk cancer). The most notable addition to endoscopy is narrow-band imaging (NBI) illuminating with two specific bandwidths of blue and green light to enhance the vascular structures through absorption. NBI provides enhanced contrast but minimal improvements in detection accuracy. A logical extension of NBI would be to use more than 2 wavelength bands to generate contrast. We propose an LED-based spectral light source to provide hyperspectral imaging for the potential of enhancing endoscopic images. This would provide 8+ bandwidths of light plus the potential of fluorescence, doubling the possible information content of enhanced images. Here, we report on improved illumination throughput, initial resolution testing and color testing for a previously reported prototype LED-based spectral light source. Results show that, while optical transmission is low, spectral illumination is still possible when combined with high-power LED emitters. Resolution results are compared to the gold standard white light source and color testing results provide baseline validation for the spectral output of the system. These results provide benchmark data for evaluating the potential of hyperspectral imaging for enhanced endoscopic imagery.
机译:在美国,内窥镜筛查的金标准是白光内窥镜(WLE),它使用奇异的宽光谱光源来照亮结肠胶。然而,与周围的粘膜相比,WLE提供了与小,平坦或早期生长病变的最小对比,又增加了这些病变的错过率,允许进一步增长潜在的致命癌症(结肠直肠癌是第3位最高风险癌)。内窥镜检查的最值得注意的是窄带成像(NBI)照亮蓝色和绿光的两个特定带宽,以通过吸收增强血管结构。 NBI提供增强的对比度,但检测准确性的提高最小。 NBI的逻辑扩展是使用超过2个波长的带来产生对比度。我们提出了一种基于LED的光谱光源,以提供高光谱成像,用于增强内窥镜图像的电位。这将提供8+带宽的光和荧光的潜力,增强了增强图像的可能信息含量加倍。在这里,我们报告了先前报道的基于原型LED的光谱光源的改善的照明吞吐量,初始分辨率测试和颜色测试。结果表明,当光学传输低时,当与大功率LED发射器结合时,仍然可能仍然是频谱照明。分辨率结果与黄金标准白光源和颜色测试结果进行了比较,为系统的光谱输出提供基线验证。这些结果提供了用于评估增强内窥镜图像的高光谱成像的基准数据。

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