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Novel biophotonic imaging techniques for assessing women's reproductive health.

机译:评估妇女生殖健康的新型生物光子成像技术。

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摘要

Even though women make up over half the population in the United States, medical advancements in areas of women's health have typically lagged behind the rest of the medical field. Specifically, two major threats to women's reproductive health include human immunodeficiency virus (HIV), and cervical cancer with accompanying human papillomavirus (HPV) infection. This dissertation presents the development and application of two novel optical imaging technologies aimed at improving these aspects of women's reproductive health.;The presented work details the instrumentation development of a probe-based, dual-modality optical imaging instrument, which uses simultaneous imaging of fluorimetry and multiplexed low coherence interferometry (mLCI) to measure in vivo microbicide gel thickness distributions. The study explores the optical performance of the device and provides proof of concept measurements on a calibration socket, tissue phantom, and in vivo human data. Once the instrument is fully characterized, it is applied in a clinical trial in which in vivo human vaginal gel thickness distributions. The gel distribution data obtained by the modalities are compared in order to assess the ability of mLCI making accurate in vivo measurements. Differences between the fluorimetry and mLCI modalities are then exploited in order to show a methodology for calculating the extent of microbicide gel dilution with the dual-modality instrument data.;Limitations in cervical cancer screening are then addressed as angle-resolved low coherence interferometry (a/LCI) is used in an ex vivo pilot study to assess the feasibility of a/LCI in identifying dysplasia in cervical tissues. The study found that the average nuclear diameter found by a/LCI in the basal layer of ectocervical epithelium showed a statistically significant increase in size in dysplastic tissue. These results indicate that a/LCI is capable of identifying cervical dysplasia in ectocervical epithelium. The results of the work presented in this dissertation show that dual-modality optical imaging with fluorimetry and mLCI, and the a/LCI technique show promise in advancing technologies that are used in the field of women's reproductive health.
机译:尽管女性占美国人口的一半以上,但是女性健康领域的医学进步通常落后于其他医学领域。具体而言,对妇女生殖健康的两个主要威胁包括人类免疫缺陷病毒(HIV)和伴随人类乳头瘤病毒(HPV)感染的宫颈癌。本论文介绍了旨在改善妇女生殖健康这些方面的两种新型光学成像技术的开发和应用。本工作详细介绍了基于探针的双模态光学成像仪器的仪器开发,该仪器使用荧光同步成像和多重低相干干涉法(mLCI)来测量体内杀菌剂凝胶厚度分布。这项研究探索了该设备的光学性能,并提供了在校准插座,组织体模和体内人体数据上进行概念测量的证据。一旦对仪器进行了充分的表征,就可以将其应用于体内人阴道凝胶厚度分布的临床试验中。比较通过模态获得的凝胶分布数据,以评估mLCI进行准确的体内测量的能力。然后利用荧光法和mLCI模态之间的差异,以显示使用双模态仪器数据计算杀微生物剂凝胶稀释程度的方法。然后将宫颈癌筛查的局限性称为角度分辨低相干干涉法(a / LCI)用于离体先导研究,以评估a / LCI在鉴定宫颈组织增生中的可行性。研究发现,a / LCI在宫颈上皮基底层中发现的平均核直径显示出增生组织大小的统计学显着增加。这些结果表明a / LCI能够识别宫颈上皮中的宫颈发育异常。论文的工作结果表明,荧光法和mLCI双模态光学成像以及a / LCI技术在推动妇女生殖健康领域的技术发展方面具有前景。

著录项

  • 作者

    Drake, Tyler Kaine.;

  • 作者单位

    Duke University.;

  • 授予单位 Duke University.;
  • 学科 Health Sciences Obstetrics and Gynecology.;Health Sciences Radiology.;Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 142 p.
  • 总页数 142
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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