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Enhancing in vivo renal ischemia assessment by high-dynamic-range fluorescence molecular imaging

机译:通过高动态范围荧光分子成像增强体内肾脏缺血评估

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摘要

Fluorescence imaging has been used to evaluate the physiological features of renal ischemia in animal model. However, the fluorophore distribution details of the ischemia model could not be fully represented due to the limited dynamic range of the charged-couple device. A high-dynamic-range (HDR) strategy was adopted in renal ischemia fluorescence imaging, both ex vivo and in vivo. The HDR strategy successfully combined ischemia relevant biological features that could only be captured with different exposure times, and then presented these features in the HDR results. The HDR results effectively highlighted the renal ischemic areas with relatively better perfusion and diminished the saturation that resulted from long exposure time. The relative fluorescence intensities of the ischemic kidneys and the image entropy values were significantly higher in the HDR images than in the original images, therefore enhancing the visualization of the renal ischemia model. The results suggest that HDR could serve as a postprocessing strategy to enhance the assessment of in vivo renal ischemia, and HDR fluorescence molecular imaging could be a valuable imaging tool for future studies of clinical ischemia detection and evaluation.
机译:荧光成像已用于评估动物模型中肾脏缺血的生理特征。但是,由于带电耦合装置的动态范围有限,因此无法完全表示局部缺血模型的荧光团分布细节。肾缺血荧光成像采用高动态范围(HDR)策略,离体和体内。 HDR策略成功地结合了缺血相关的生物学特征,这些特征只能用不同的暴露时间才能捕获,然后在HDR结果中显示这些特征。 HDR结果有效地突出了肾脏缺血区域,具有相对更好的灌注,并减少了由于长时间暴露而导致的饱和度。 HDR图像中缺血性肾脏的相对荧光强度和图像熵值显着高于原始图像,因此增强了肾脏缺血模型的可视化。结果表明,HDR可以作为一种后处理策略,以增强对体内肾脏缺血的评估,而HDR荧光分子成像可能是用于将来临床缺血检测和评估研究的有价值的成像工具。

著录项

  • 来源
    《Journal of biomedical optics》 |2018年第7期|076009.1-076009.9|共9页
  • 作者单位

    Tsinghua University, School of Medicine, Department of Biomedical Engineering, Beijing, China;

    Tsinghua University, School of Medicine, Department of Biomedical Engineering, Beijing, China;

    Beijing Jiaotong University, School of Computer and Information Technology, Beijing, China;

    Tsinghua University, School of Medicine, Department of Biomedical Engineering, Beijing, China,Tsinghua University, Center for Biomedical Imaging Research, Beijing, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    fluorescence molecular imaging; high-dynamic-range; fluorophore distribution; renal ischemia assessment;

    机译:荧光分子成像;高动态范围荧光团分布肾缺血评估;

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