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Development of Fourier domain optical coherence tomography for applications in developmental biology.

机译:傅立叶域光学相干层析成像技术的发展,用于发育生物学。

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摘要

Developmental biology is a field in which explorations are made to answer how an organism transforms from a single cell to a complex system made up of trillions of highly organized and highly specified cells. This field, however, is not just for discovery, it is crucial for unlocking factors that lead to diseases, defects, or malformations. The one key ingredient that contributes to the success of studies in developmental biology is the technology that is available for use. Optical coherence tomography (OCT) is one such technology. OCT fills a niche between the high resolution of confocal microscopy and deep imaging penetration of ultrasound. Developmental studies of the chicken embryo heart are of great interest. Studies in mature hearts, zebrafish animal models, and to a more limited degree chicken embryos, indicate a relationship between blood flow and development. It is believed that at the earliest stages, when the heart is still a tube, the purpose of blood flow is not for convective transport of oxygen, nutrients and waster, bur rather to induce shear-related gene expressions to induce further development. Yet, to this date, the simple question of "what makes blood flow?" has not been answered. This is mainly due limited availability to adequate imaging and blood flow measurement tools. Earlier work has demonstrated the potential of OCT for use in studying chicken embryo heart development, however quantitative measurement techniques still needed to be developed. In this dissertation I present technological developments I have made towards building an OCT system to study chick embryo heart development. I will describe: (1) a swept-source OCT with extended imaging depth; (2) a spectral domain OCT system for non-invasive small animal imaging; (3) Doppler flow imaging and techniques for quantitative blood flow measurement in living chicken embryos; and (4) application of the OCT system that was developed in the Specific Aims 2-5 to test hypotheses generated by a finite element model which treats the embryonic chick heart tube as a modified peristaltic pump.
机译:发育生物学是一个探索领域,以回答生物如何从单个细胞转变为由数万亿个高度组织化和高度指定的细胞组成的复杂系统的领域。但是,该领域不仅用于发现,对于解锁导致疾病,缺陷或畸形的因素也至关重要。有助于发展生物学研究成功的关键因素之一是可使用的技术。光学相干断层扫描(OCT)就是这样一种技术。 OCT填补了共聚焦显微镜的高分辨率和超声深度成像之间的利基。鸡胚心脏的发育研究引起了极大的兴趣。在成熟的心脏,斑马鱼动物模型以及更有限的鸡胚中的研究表明,血流与发育之间存在关联。可以相信,在早期阶段,当心脏仍然是管子时,血流的目的不是为了对流输送氧气,营养物和废物,bur,而是诱导剪切相关的基因表达,从而诱导进一步的发育。然而,到目前为止,一个简单的问题是“什么使血液流动?”尚未回答。这主要是由于缺乏足够的成像和血流测量工具。早期的工作证明了OCT在研究鸡胚心脏发育中的潜力,但是仍然需要开发定量测量技术。在这篇论文中,我介绍了我在建立OCT系统以研究鸡胚心脏发育方面的技术发展。我将描述:(1)具有扩展成像深度的扫频OCT; (2)用于非侵入性小动物成像的光谱域OCT系统; (3)活鸡胚胎的多普勒血流显像和定量血流测量技术; (4)在“特定目标2-5”中开发的OCT系统的应用,以测试由有限元模型生成的假设,该有限元模型将胚胎鸡心管视为改良的蠕动泵。

著录项

  • 作者

    Davis, Anjul Maheshwari.;

  • 作者单位

    Duke University.;

  • 授予单位 Duke University.;
  • 学科 Engineering Biomedical.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 142 p.
  • 总页数 142
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;光学;
  • 关键词

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