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首页> 外文期刊>Applied optics >THREE-DIMENSIONAL IMAGING OF OBJECTS EMBEDDED IN TURBID MEDIA WITH FLUORESCENCE AND RAMAN SPECTROSCOPY
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THREE-DIMENSIONAL IMAGING OF OBJECTS EMBEDDED IN TURBID MEDIA WITH FLUORESCENCE AND RAMAN SPECTROSCOPY

机译:含荧光和拉曼光谱的湍流介质中物体的三维成像

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摘要

We present a single-ended technique for three-dimensional imaging of objects embedded in a turbid medium by the use of time-resolved fluorescence emission or Raman scattering. The technique uses the earliest arriving photons, which we show are not sensitive to the relatively long fluorescence lifetime, and thus can be used to extract the desired spatial information accurately, even at a distance equivalent to 100 mean free paths. The results also demonstrate the feasibility and the potential of one's combining time-resolved optical tomography with fluorescence or Raman spectroscopy to localize and identify the embedded objects. This technique may be valuable for the diagnosis of disease in highly scattering human tissue because it can provide spatial and biochemical information about the composition of embedded lesions. [References: 19]
机译:我们提出了一种单端技术,用于通过使用时间分辨荧光发射或拉曼散射对嵌入浑浊介质中的物体进行三维成像。该技术使用最早到达的光子,我们证明了它对较长的荧光寿命不敏感,因此即使在等于100个平均自由程的距离下,也可以用来精确提取所需的空间信息。结果还证明了将时间分辨光学层析成像技术与荧光或拉曼光谱技术相结合以定位和识别嵌入式物体的可行性和潜力。该技术对于高度散布的人体组织中的疾病诊断可能有价值,因为它可以提供有关包埋病变组成的空间和生化信息。 [参考:19]

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