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Total internal reflection holographic microscopy (TIRHM) for quantitative phase characterization of cell-substrate adhesion.

机译:全内反射全息显微镜(TIRHM)用于定量量化细胞-基质粘附的相位。

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摘要

Total Internal Reflection Holographic Microscopy (TIRHM) combines near-field microscopy with digital holography to produce a new form of near-field phase microscopy. Using a prism in TIR as a near-field imager, the presence of microscopic organisms, cell-substrate interfaces, and adhesions, causes relative refractive index (RRI) and frustrated TIR (f-TIR) to modulate the object beam's evanescent wave phase front. Quantitative phase images of test specimens such as Amoeba proteus, Dictyostelium Discoideum and cells such as SKOV-3 ovarian cancer and 3T3 fibroblasts are produced without the need to introduce stains or fluorophores. The angular spectrum method of digital holography to compensate for tilt anamorphism due to the inclined TIR plane is also discussed.;The results of this work conclusively demonstrate, for the first time, the integration of near-field microscopy with digital holography. The cellular images presented show a correlation between the physical extent of the Amoeba proteus plasma membrane and the adhesions that are quantitatively profiled by phase cross-sectioning of the holographic images obtained by digital holography. With its ability to quantitatively characterise cellular adhesion and motility, it is anticipated that TIRHM can be a tool for characterizing and combating cancer metastasis, as well as improving our understanding of morphogenesis and embryogenesis itself.
机译:全内反射全息显微术(TIRHM)将近场显微术与数字全息术相结合,以产生一种新形式的近场相位显微术。在TIR中使用棱镜作为近场成像器,微观有机物,细胞-基质界面和粘附的存在会导致相对折射率(RRI)和受挫的TIR(f-TIR)来调节物光束的van逝波相前。无需引入染色剂或荧光团即可产生测试样品(如变形虫,变形金刚杆菌和Discoyostelium Discoideum)以及细胞(如SKOV-3卵巢癌和3T3成纤维细胞)的定量相图。还讨论了数字全息术的角度光谱方法,以补偿由于倾斜的TIR平面而引起的倾斜变形。这项工作的结果首次证明了近场显微镜与数字全息术的集成。呈现的细胞图像显示变形虫质膜的物理范围和粘附之间的相关性,该粘附通过通过数字全息术获得的全息图像的相截面定量地描绘。凭借其定量表征细胞粘附和运动性的能力,可以预期TIRHM可以成为表征和对抗癌症转移的工具,以及增进我们对形态发生和胚胎发生本身的理解。

著录项

  • 作者

    Ash, William Mason, III.;

  • 作者单位

    University of South Florida.;

  • 授予单位 University of South Florida.;
  • 学科 Physics General.;Biophysics General.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 140 p.
  • 总页数 140
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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