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Fluorescence imaging for Whole Slide Scanning using LED-Based Color Sequential Illumination

机译:使用基于LED的颜色顺序照明进行全玻片扫描的荧光成像

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In the field of pathology there is an ongoing transition to the use of Whole Slide Imaging (WSI) systems which scan tissue slides at intermediate resolution (~0.25μm) and high throughput (15mm~2/min) to digital image files. Most scanners currently on the market are line-sensor based push-broom scanners for three-color (RGB) brightfield imaging. Adding the ability of fluorescence imaging opens up a wide range of possibilities to the field, in particular the use of specific molecular (proteins, genes) imaging techniques. We propose an extension to fluorescence imaging for a highly efficient WSI systems based on a line scanning technique using multi-color LED epi-illumination. The use of multi-band dichroics eliminates the need for filter wheels or any other moving parts in the system, the use of color sequential illumination with LEDs enables imaging of multiple color channels with a single sensor. Our approach offers a solution to fluorescence WSI systems that is technologically robust and cost-effective. We present design details of a four-color LED based epi-illumination with a quad-band dichroic filter optimized for LEDs. We provide a thorough analysis regarding the obtained optical and spectral efficiency. The primary throughput limitation is the minimum Signal-to-Noise-Ratio (SNR) given the available optical power in the illumination etendue, and indicates that a throughput on the order of 1000 lines/sec can be obtained.
机译:在病理学领域,正在向使用全玻片成像(WSI)系统过渡,该系统以中等分辨率(〜0.25μm)和高通量(15mm〜2 / min)扫描组织玻片到数字图像文件。当前市场上的大多数扫描仪都是基于行传感器的推扫式扫描仪,用于三色(RGB)明场成像。增加荧光成像的能力为该领域打开了广泛的可能性,特别是使用了特定的分子(蛋白质,基因)成像技术。我们建议使用基于多色LED落射照明的线扫描技术,对高效WSI系统的荧光成像进行扩展。多波段二向色镜的使用消除了系统中对滤光轮或任何其他移动部件的需求,LED的彩色顺序照明的使用使单个传感器即可成像多个色彩通道。我们的方法为荧光WSI系统提供了技术上强大且具有成本效益的解决方案。我们介绍了基于四色LED的落射照明的设计细节,该照明具有针对LED进行了优化的四波段二向色滤光片。我们对获得的光学和光谱效率进行了详尽的分析。给定照明集光率中的可用光功率,主要的吞吐量限制是最小信噪比(SNR),它表明可以获得1000行/秒的吞吐量。

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