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基于光谱解析探测器阵列的双模态反射率和荧光多光谱内窥镜。

Bimodal reflectance and fluorescence multispectral endoscopy based on spectrally resolving detector arrays.

机构信息

University of Cambridge, Department of Physics, Cambridge, United Kingdom.

University of Cambridge, Cancer Research UK Cambridge Institute, Li Ka Shing Center, Robinson Way, C, United Kingdom.

出版信息

J Biomed Opt. 2018 Oct;24(3):1-14. doi: 10.1117/1.JBO.24.3.031009.

Abstract

Emerging clinical interest in combining standard white light endoscopy with targeted near-infrared (NIR) fluorescent contrast agents for improved early cancer detection has created demand for multimodal imaging endoscopes. We used two spectrally resolving detector arrays (SRDAs) to realize a bimodal endoscope capable of simultaneous reflectance-based imaging in the visible spectral region and multiplexed fluorescence-based imaging in the NIR. The visible SRDA was composed of 16 spectral bands, with peak wavelengths in the range of 463 to 648 nm and full-width at half-maximum (FWHM) between 9 and 26 nm. The NIR SRDA was composed of 25 spectral bands, with peak wavelengths in the range 659 to 891 nm and FWHM 7 to 15 nm. The spectral endoscope design was based on a "babyscope" model using a commercially available imaging fiber bundle. We developed a spectral transmission model to select optical components and provide reference endmembers for linear spectral unmixing of the recorded image data. The technical characterization of the spectral endoscope is presented, including evaluation of the angular field-of-view, barrel distortion, spatial resolution and spectral fidelity, which showed encouraging performance. An agarose phantom containing oxygenated and deoxygenated blood with three fluorescent dyes was then imaged. After spectral unmixing, the different chemical components of the phantom could be successfully identified via majority decision with high signal-to-background ratio (>3). Imaging performance was further assessed in an ex vivo porcine esophagus model. Our preliminary imaging results demonstrate the capability to simultaneously resolve multiple biological components using a compact spectral endoscopy system.

摘要

新兴的临床研究兴趣在于将标准白光内窥镜与靶向近红外(NIR)荧光对比剂相结合,以提高早期癌症检测的效果,这就催生了对多模态成像内窥镜的需求。我们使用两个光谱分辨探测器阵列(SRDA)实现了一种双模内窥镜,能够在可见光谱区域进行基于反射的成像,以及在近红外区域进行复用荧光成像。可见光谱 SRDA 由 16 个光谱带组成,峰值波长范围在 463nm 到 648nm 之间,半峰全宽(FWHM)在 9nm 到 26nm 之间。NIR SRDA 由 25 个光谱带组成,峰值波长范围在 659nm 到 891nm 之间,半峰全宽 7nm 到 15nm。光谱内窥镜的设计基于使用市售成像光纤束的“babyscope”模型。我们开发了一种光谱传输模型来选择光学组件,并为记录的图像数据的线性光谱解混提供参考端元。本文介绍了光谱内窥镜的技术特征,包括角视场、桶形失真、空间分辨率和光谱保真度的评估,结果显示出令人鼓舞的性能。然后,对含有氧合和去氧血红蛋白以及三种荧光染料的琼脂糖体模进行了成像。经过光谱解混后,可以通过多数表决法成功识别体模的不同化学成分,具有高的信噪比(>3)。进一步在离体猪食管模型中评估了成像性能。我们的初步成像结果表明,使用紧凑型光谱内窥镜系统可以同时解析多个生物成分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b626/6975231/6fa5b5aaa8a2/JBO-024-031009-g001.jpg

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