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Optical characterization and polarization calibration for rigid endoscopes

机译:刚性内窥镜的光学表征和偏振校准

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摘要

Polarization measurements give orthogonal information to spectral images making them a great tool in the characterization of environmental parameters in nature. Thus, polarization imagery has proven to be remarkably useful in a vast range of biomedical applications. One such application is the early diagnosis of flat cancerous lesions in murine colorectal tumor models, where polarization data complements NIR fluorescence analysis. Advances in nanotechnology have led to compact and precise bio-inspired imaging sensors capable of accurately co-registering multidimensional spectral and polarization information. As more applications emerge for these imagers, the optics used in these instruments get very complex and can potentially compromise the original polarization state of the incident light. Here we present a complete optical and polarization characterization of three rigid endoscopes of size 1.9mm x 10cm (Karl Storz, Germany), 5mm x 30cm, and 10mm x 33cm (Olympus, Germany), used in colonoscopy for the prevention of colitis-associated cancer. Characterization results show that the telescope optics act as retarders and effectively depolarize the linear component. These incorrect readings can cause false-positives or false-negatives leading to an improper diagnosis. In this paper, we offer a polarization calibration scheme for these endoscopes based on Mueller calculus. By modeling the optical properties from training data as real-valued Mueller matrices, we are able to successfully reconstruct the initial polarization state acquired by the imaging system.
机译:偏振测量为光谱图像提供正交信息,使其成为表征自然环境参数的绝佳工具。因此,极化成像已被证明在广泛的生物医学应用中非常有用。一种这样的应用是在鼠大肠肿瘤模型中早期诊断扁平癌病变,其中极化数据补充了近红外荧光分析。纳米技术的进步导致了紧凑且精确的生物启发成像传感器,能够准确地共记录多维光谱和偏振信息。随着这些成像仪的更多应用出现,这些仪器中使用的光学器件变得非常复杂,并有可能损害入射光的原始偏振状态。在这里,我们介绍了三种硬性内窥镜的完整光学和偏振特性,这三种硬性内窥镜用于预防结肠炎相关的结肠镜检查,该硬性内窥镜的尺寸分别为1.9mm x 10cm(德国卡尔·斯托兹),5mm x 30cm和10mm x 33cm(德国奥林匹斯)。癌症。表征结果表明,望远镜光学器件可作为延迟器,并有效地消除线性分量的偏振。这些错误的读数可能导致假阳性或假阴性,导致诊断不正确。在本文中,我们基于Mueller演算为这些内窥镜提供了偏振校准方案。通过将训练数据的光学特性建模为实值Mueller矩阵,我们能够成功地重建成像系统获取的初始偏振态。

著录项

  • 来源
    《Endoscopic Microscopy XII》|2017年|1004008.1-1004008.7|共7页
  • 会议地点 San Francisco(US)
  • 作者

    Missael Garcia; Viktor Gruev;

  • 作者单位

    Department of Computer Science and Engineering, Washington University in St. Louis, St. Louis, MO, USA 63130;

    Department of Electrical and Computer Engineering, University of Illinois at Urbana-Champaign, Urbana,IL, USA 61801;

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

    Endoscope; Polarization; Calibration; Characterization;

    机译:内窥镜;偏振;校准;表征;
  • 入库时间 2022-08-26 14:31:26

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