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Improving depth sensitive fluorescence spectroscopy with wavefront shaping

机译:用波前塑形改善深度敏感荧光光谱

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Depth sensitive optical spectroscopy detects optical spectra from different layers in layered samples, revealing crucial information about the samples, for example, and the progress of epithelial cancer. In depth sensitive fluorescence measurements, multiple light scattering in tissues significantly degrades the depth sensitivity to a subsurface target layer. To address this issue, feedback based wavefront shaping led by guide stars can be used to refocus light to increase the depth sensitivity to a target layer. However, the low target to background ratio caused by multiple scattering in tissue leads to weak fluorescence measurement from the target layer inside. In this study, we demonstrate that by using feedback based wavefront shaping, we can increase the signal contribution from the target and suppress that from the background region in tissue-like scattering phantoms. After wavefront optimization, the signal from the target can increase by quite a few times. Feedback based wavefront shaping can be very useful in depth sensitive fluorescence spectroscopy for the characterization of layered structures such as epithelial tissues.
机译:深度敏感光学光谱检测分层样品中不同层的光谱,揭示了关于样品的重要信息,以及上皮癌的进展。在深度敏感的荧光测量中,组织中的多个光散射显着降低了对地下靶层的深度灵敏度。要解决此问题,基于反馈由导向恒星带来的基于反馈的波前整形可用于重新聚焦光以增加对目标层的深度灵敏度。然而,由组织中多次散射引起的低目标对由多个散射引起的导致从靶层内部的弱荧光测量。在这项研究中,我们证明通过使用基于反馈的波前塑造,我们可以从目标中增加信号贡献并从组织散射模拟中抑制来自背景区域的背景区域。在波前优化之后,来自目标的信号可能会增加几次。基于反馈基于反馈的波前成型可以在深度敏感荧光光谱中非常有用,以表征层状结构,例如上皮组织。

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