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Spectral selective fluorescence molecular imaging with volume holographic imaging system

机译:体积全息成像系统的光谱选择性荧光分子成像

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A compact volume holographic imaging (VHI) method that can detect fluorescence objects located in diffusive medium in spectral selective imaging manner is presented. The enlargement of lateral field of view of the VHI system is realized by using broadband illumination and demagnification optics. Each target spectrum of fluorescence emitting from a diffusive medium is probed by tuning the inclination angle of the transmission volume holographic grating (VHG). With the use of the single transmission VHG, fluorescence images with different spectrum are obtained sequentially and precise three-dimensional (3D) information of deep fluorescent objects located in a diffusive medium can be reconstructed from these images. The results of phantom experiments demonstrate that two fluorescent objects with a sub-millimeter distance can be resolved by spectral selective imaging.
机译:提出了一种能够以光谱选择性成像的方式检测位于扩散介质中的荧光物体的紧凑体积全息成像(VHI)方法。通过使用宽带照明和放大光学元件,可以实现VHI系统横向视野的扩大。通过调整透射体积全息光栅(VHG)的倾斜角度,探测从扩散介质发出的荧光的每个目标光谱。使用单透射VHG,可以顺序获得具有不同光谱的荧光图像,并且可以从这些图像中重建位于扩散介质中的深层荧光对象的精确三维(3D)信息。幻像实验的结果表明,可以通过光谱选择性成像分辨出亚毫米距离的两个荧光物体。

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