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Imaging of Blood Cells Based on Snapshot Hyper-Spectral Imaging Systems

机译:基于快照高光谱成像系统的血细胞成像

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摘要

Snapshot Hyper-Spectral imaging systems are capable of capturing several spectral bands simultaneously, offering co-registered images of a target. With appropriate optics, these systems are potentially able to image blood cells in vivo as they flow through a vessel, eliminating the need for a blood draw and sample staining. Our group has evaluated the capability of a commercial Snapshot Hyper-Spectral imaging system, the Arrow system from Rebellion Photonics, in differentiating between white and red blood cells on unstained blood smear slides. We evaluated the imaging capabilities of this hyperspectral camera; attached to a microscope at varying objective powers and illumination intensity. Hyperspectral data consisting of 25, 443×313 hyperspectral bands with ~3nm spacing were captured over the range of 419 to 494nm. Open-source hyper-spectral data cube analysis tools, used primarily in Geographic Information Systems (GIS) applications, indicate that white blood cells features are most prominent in the 428-442nm band for blood samples viewed under 20x and 50x magnification over a varying range of illumination intensities. These images could potentially be used in subsequent automated white blood cell segmentation and counting algorithms for performing in vivo white blood cell counting.
机译:快照高光谱成像系统能够同时捕获多个光谱带,从而提供目标的共同配准图像。有了适当的光学元件,这些系统就可以在血细胞流过血管时在体内成像,从而无需抽血和样本染色。我们的小组评估了商业化的快照高光谱成像系统(Rebellion Photonics的Arrow系统)在区分未染色的血液涂片上的白细胞和红细胞的能力。我们评估了这种高光谱相机的成像能力;以不同的物镜功率和照明强度连接到显微镜。在419nm至494nm范围内捕获了由25个443×313个高光谱带组成的高光谱数据,间距约为3nm。主要在地理信息系统(GIS)应用中使用的开源高光谱数据立方体分析工具表明,对于在不同范围内以20倍和50倍放大倍数查看的血样,白细胞特征在428-442nm波段中最为突出。照明强度。这些图像可能会在后续的自动白细胞分割和计数算法中用于执行体内白细胞计数。

著录项

  • 来源
  • 会议地点 Baltimore MD(US)
  • 作者单位

    West Virginia University, PO Box 6201, Morgantown, WV, USA 26506, Lane Department of Computer Science and Electrical Engineering, Benjamin M. Statler College of Engineering and Mineral Resources, PO Box 6070, Morgantown, WV USA 26506-6070;

    West Virginia University, PO Box 6201, Morgantown, WV, USA 26506, Lane Department of Computer Science and Electrical Engineering, Benjamin M. Statler College of Engineering and Mineral Resources, PO Box 6070, Morgantown, WV USA 26506-6070;

    West Virginia University, PO Box 6201, Morgantown, WV, USA 26506, Lane Department of Computer Science and Electrical Engineering, Benjamin M. Statler College of Engineering and Mineral Resources, PO Box 6070, Morgantown, WV USA 26506-6070;

    West Virginia University, PO Box 6201, Morgantown, WV, USA 26506, Lane Department of Computer Science and Electrical Engineering, Benjamin M. Statler College of Engineering and Mineral Resources, PO Box 6070, Morgantown, WV USA 26506-6070;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hyperspectral imaging (HSI); Blood cell detection; Point of care diagnostics; Biomedical optics;

    机译:高光谱成像(HSI);血细胞检测;护理点诊断;生物医学光学;

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