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Quantitative determination of maximal imaging depth in all-NIR multiphoton microscopy images of thick tissues

机译:厚组织全近红外多光子显微镜图像中最大成像深度的定量测定

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摘要

We report two methods for quantitatively determining maximal imaging depth from thick tissue images captured using all-near-infrared (NIR) multiphoton microscopy (MPM). All-NIR MPM is performed using 1550 mn laser excitation with NIR detection. This method enables imaging more than five-fold deep in thick tissues in comparison with other NIR excitation microscopy methods. In this study, we show a correlation between the multiphoton signal along the depth of tissue samples and the shape of the corresponding empirical probability density function (pdf) of the photon counts. Histograms from this analysis become increasingly symmetric with the imaging depth. This distribution transitions toward the background distribution at higher imaging depths. Inspired by these observations, we propose two independent methods based on which one can automatically determine maximal imaging depth in the all-NIR MPM images of thick tissues. At this point, the signal strength is expected to be weak and similar to the background. The first method suggests the maximal imaging depth corresponds to the deepest image plane where the ratio between the mean and median of the empirical photon-count pdf is outside the vicinity of 1. The second method suggests the maximal imaging depth corresponds to the deepest image plane where the squared distance between the empirical photon-count mean obtained from the object and the mean obtained from the background is greater than a threshold. We demonstrate the application of these methods in all-NIR MPM images of mouse kidney tissues to study maximal depth penetration in such tissues.
机译:我们报告了两种方法,用于定量确定使用全近红外(NIR)多光子显微镜(MPM)捕获的厚组织图像的最大成像深度。全NIR MPM使用1550百万个具有NIR检测功能的激光激发进行。与其他NIR激发显微镜方法相比,该方法能够对厚组织进行五倍以上的成像。在这项研究中,我们显示了沿组织样本深度的多光子信号与光子计数的相应经验概率密度函数(pdf)的形状之间的相关性。通过此分析得出的直方图与成像深度变得越来越对称。在较高的成像深度时,此分布向背景分布过渡。受这些观察的启发,我们提出了两种独立的方法,一种可以自动确定厚组织的全近红外MPM图像中最大成像深度的方法。此时,预计信号强度会很弱,并且与背景相似。第一种方法建议最大成像深度对应于最深图像平面,其中经验光子计数pdf的平均值与中值之比在1的附近。第二种方法建议最大成像深度对应于最深图像平面。其中从物体获得的经验光子计数平均值与从背景获得的平均值之间的平方距离大于阈值。我们证明了这些方法在小鼠肾脏组织的全近红外MPM图像中的应用,以研究此类组织的最大深度穿透。

著录项

  • 来源
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Department of Radiology, Washington University School of Medicine, CB 8225, 4225 Scott Av., St. Louis, MO 63108, USA;

    Department of Radiology, Washington University School of Medicine, CB 8225, 4225 Scott Av., St. Louis, MO 63108, USA;

    Department of Radiology, Washington University School of Medicine, CB 8225, 4225 Scott Av., St. Louis, MO 63108, USA;

    Applied Optics Laboratory, GE Global Research, Niskayuna, NY 12309, USA;

    Department of Radiology, Washington University School of Medicine, CB 8225, 4225 Scott Av., St. Louis, MO 63108, USA;

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

    Near-infrared (NIR); cyanine dyes; all-NIR multiphoton microscopy;

    机译:近红外(NIR);花青染料;全近红外多光子显微镜;
  • 入库时间 2022-08-26 13:44:25

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