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Ex vivo and in vivo OCT image contrast

机译:体外和体内OCT图像对比

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摘要

We present results of OCT and polarization-OCT applied to various ex vivo tissue samples and discuss related issues of image contrast, comparing in vivo and ex vivo preparations. Time-domain and frequency-domain OCT at 835nm and 1300nm have been applied to ex vivo skin and rabbit cornea. We can distinguish rabbit cornea epithelium for up to a month after excision. However, the skin loses all contrast upon excision and despite numerous experiments we cannot distinguish epidermis, which is clearly visible in vivo. Using a time-domain system, birefringence is clearly visible for decalcified tissue but can also be detected more weakly on fully mineralised tissue. Analysis suggests that demineralization increases the birefringence value.
机译:我们介绍了将OCT和极化OCT应用于各种离体组织样本的结果,并讨论了图像对比度的相关问题,比较了体内和离体制剂。 835nm和1300nm的时域和频域OCT已应用于离体皮肤和兔角膜。切除后长达一个月的时间,我们可以分辨出兔角膜上皮。然而,皮肤在切除后会失去所有对比度,尽管进行了大量实验,我们仍无法区分表皮,而表皮在体内是显而易见的。使用时域系统,对于脱钙的组织,双折射是清晰可见的,但在完全矿化的组织上也可以较弱地检测到。分析表明,脱矿质会增加双折射值。

著录项

  • 来源
    《Optical coherence tomography and adaptive optics》|2008年|71390W.1-71390W.8|共8页
  • 会议地点 Canterbury(GB)
  • 作者单位

    Department of Computer Science, 211 Portobello, Sheffield, S1 4DP, United Kingdom;

    Department of Engineering Materials, Kroto Research Institute, North Campus, Broad Lane, Sheffield, S3 7HQ, United Kingdom;

    Department of Engineering Materials, Kroto Research Institute, North Campus, Broad Lane, Sheffield, S3 7HQ, United Kingdom;

    Department of Engineering Materials, Kroto Research Institute, North Campus, Broad Lane, Sheffield, S3 7HQ, United Kingdom;

    Department of Engineering Materials, Kroto Research Institute, North Campus, Broad Lane, Sheffield, S3 7HQ, United Kingdom;

    Department of Engineering Materials, Kroto Research Institute, North Campus, Broad Lane, Sheffield, S3 7HQ, United Kingdom;

    Department of Computer Science, 211 Portobello, Sheffield, S1 4DP, United Kingdom;

    Department of Enginee;

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

    optical coherence tomography; tissue engineering; ex vivo skin; ex vivo cornea;

    机译:光学相干断层扫描;组织工程;离体皮肤离体角膜;

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