论文标题
单像素荧光衍射断层扫描
Single-Pixel Fluorescent Diffraction Tomography
论文作者
论文摘要
光学衍射层析成像是必不可少的工具,用于研究三维物体,因为它可以准确地重建散射对象。到目前为止,该技术一直限于连贯的光,因为需要空间相信息来解决反向散射问题。我们介绍了一种将光学衍射断层扫描扩展到成像的方法,例如荧光发射等空间不连贯的对比度机制。我们的策略与两个空间相干照明光束模仿了相干散射过程。干涉照明模式在荧光发射的时间变化中编码空间相,从而使荧光发射不连贯以模仿相干照明的行为。时间变化允许恢复传播阶段,因此可以通过反向散射模型恢复不相干荧光发射的空间分布。
Optical diffraction tomography is an indispensable tool for studying objects in three-dimensions due to its ability to accurately reconstruct scattering objects. Until now this technique has been limited to coherent light because spatial phase information is required to solve the inverse scattering problem. We introduce a method that extends optical diffraction tomography to imaging spatially incoherent contrast mechanisms such as fluorescent emission. Our strategy mimics the coherent scattering process with two spatially coherent illumination beams. The interferometric illumination pattern encodes spatial phase in temporal variations of the fluorescent emission, thereby allowing incoherent fluorescent emission to mimic the behavior of coherent illumination. The temporal variations permit recovery of the propagation phase, and thus the spatial distribution of incoherent fluorescent emission can be recovered with an inverse scattering model.