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Fluorescence lifetime-resolved imaging microscopy studies: Quantitative image analysis, spectral-flim, and photosynthesis.

机译:荧光寿命分辨成像显微镜研究:定量图像分析,光谱平移和光合作用。

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摘要

Development of instrumentation and image analysis methods for the fluorescence lifetime-resolved imaging microscopy (FLIM) were carried out in this thesis. With the new instrument setup and imaging processing algorithms, valuable information has been provided for studying in vivo photosynthesis activities.;Chapter 1 introduces the physics of fluorescence lifetimes and different techniques of FLIM measurements. It also provides practical considerations for successfully acquiring fluorescence lifetime imaging data, especially with in vivo samples. Chapter 2 discusses the image analysis algorithms essential for quantitative analysis of high through-put FLIM data. The advantages of the polar plot, a model-free analysis for fluorescence lifetime data, will be described in detail. The denoising procedure, variance-stabilizing-transform translation-invariant Harr wavelet, and the multi-scale edge detection algorithm, wavelet transform, were applied to improve the precision of lifetime resolution in the images, and to select features at the desired spatial frequency, respectively. K-means cluster analysis was used to analyze a polymer brush microfluid device and the chlorophyll (Chl) a fluorescence transient of Chlamydomonas reinhardtii cells. It will be shown that additional information is provided by the cluster analysis, which would otherwise be hidden in the large quantity of data. Chapter 3 discusses the instrumentation and image analysis methods for the spectrally-resolved FLIM (Spectral-FLIM), which was developed to overcome problems of separating lifetime components in complex environments, especially for fluorescence signals from fluorophores with very low intensity (< 2% of the background). Spectral-FLIM also allows a more detailed and accurate analysis of Forster resonance energy transfer (FRET) measurements. It will be shown in Chapter 3 that a single measurement of Spectral-FLIM can resolve three fluorescence signals (donor undergoing FRET to the acceptor, acceptor excited by FRET, and directly excited acceptor) on the polar plot.;Chapter 4 describes FLIM applications in photosynthesis studies. FLIM data of Chlamydomonas reinhardtii could distinguish the Chl a signals undergoing two different non-photochemical quenching pathways, energy-dependent quenching and state transitions. Spectral-FLIM measurements of avocado leaves (Persea americana Mill.) during the slow phase of Chl a fluorescence transient were also carried out. The data show that the red- and far-red regions of the spectrum have different kinetics and lifetimes, which might suggest that there are two separate binding sites for xanthophyll molecules. Chapter 5 describes experiments to study the lutein-epoxide and violaxanthin cycles operating in parallel in avocado leaves. A good correlation of the fluorescence intensity and Chlorophyll a lifetimes is shown by FLIM measurements, indicating two different quenching states; therefore, the FLIM measurements provide evidence that both cycles are energy-dependent quenching pathways.
机译:本文对荧光寿命分辨成像显微镜(FLIM)的仪器和图像分析方法进行了开发。借助新的仪器设置和成像处理算法,已为研究体内光合作用提供了有价值的信息。;第一章介绍了荧光寿命的物理原理和不同的FLIM测量技术。它还为成功获取荧光寿命成像数据(尤其是体内样品)提供了实际考虑。第2章讨论了对高通量FLIM数据进行定量分析所必需的图像分析算法。极坐标图的优点是无荧光寿命数据的无模型分析,将详细描述。应用降噪过程,方差稳定变换和平移不变Harr小波,以及多尺度边缘检测算法小波变换,以提高图像的生命周期分辨率的精度,并以所需的空间频率选择特征,分别。 K-均值聚类分析用于分析聚合物刷微流体装置,叶绿素(Chl)是莱茵衣藻细胞的荧光瞬变。将显示,聚类分析提供了其他信息,否则这些信息将隐藏在大量数据中。第3章讨论了光谱分辨FLIM(Spectral-FLIM)的仪器和图像分析方法,该方法旨在克服在复杂环境中分离寿命成分的问题,尤其是对于强度非常低(小于2%的荧光团)的荧光信号背景)。 Spectral-FLIM还允许对Forster共振能量转移(FRET)测量进行更详细,准确的分析。在第3章中将显示,对Spectral-FLIM进行一次测量可以在极坐标图上解析三个荧光信号(供体接受FRET的受主,受FRET激发的受主和直接受激的受主)。光合作用研究。莱茵衣藻的FLIM数据可以区分Chla信号经历两种不同的非光化学猝灭途径,能量依赖性猝灭和状态转变。还在鳄梨叶片(Persea americana Mill。)的Chl a荧光瞬变阶段进行了光谱FLIM测量。数据表明,光谱的红色和远红色区域具有不同的动力学和寿命,这可能表明叶黄素分子有两个单独的结合位点。第5章介绍了研究鳄梨叶中叶黄素-环氧化合物和紫黄质素循环平行运行的实验。 FLIM测量显示荧光强度与叶绿素a寿命之间具有良好的相关性,表明存在两种不同的淬灭状态。因此,FLIM测量提供了两个循环都是能量依赖性淬灭途径的证据。

著录项

  • 作者

    Chen, Yi-Chun.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Engineering Biomedical.;Biophysics General.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 119 p.
  • 总页数 119
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:30

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