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Quantitative phase imaging in turbid media by coherence controlled holographic microscopy

机译:相干控制全息显微镜在混浊介质中定量相成像

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Quantitative phase imaging (QPI) became an important technique for label-free biomedical imaging suitable particularly for observation of live cell and dry-mass profiling. Extension of this technique to objects immersed in turbid medium is highly desirable with respect to the need of non-invasive observation of live cells in real 3D environments. Coherence-controlled holographic microscopy is capable of QPI through turbid media owing to coherence gating induced in transmitted-light geometry by low spatial coherence of illumination. Using this approach, QPI of object in turbid medium can be formed both by ballistic and multiply scattered photons. Moreover, the particular QPIs formed by ballistic and scattered photons can be superimposed thus yielding synthetic QPI of substantially improved image quality. We support the theoretical reasoning of the effect by experimental data.
机译:定量相成像(QPI)成为无标记生物医学成像的一项重要技术,特别适用于观察活细胞和干质量谱。相对于在真实3D环境中对活细胞进行非侵入式观察的需求,非常需要将此技术扩展到浸没在混浊介质中的对象。相干控制全息显微镜能够通过混浊介质进行QPI,这是由于低空间相干照明在透射光几何结构中引起的相干门控。使用这种方法,可以通过弹道和多重散射光子来形成浑浊介质中物体的QPI。此外,由弹道和散射光子形成的特定QPI可以叠加,从而产生实质上改善了图像质量的合成QPI。我们通过实验数据支持对效应的理论推论。

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