论文标题

荧光波前使用不连贯的迭代相结合

Fluorescent wavefront shaping using incoherent iterative phase conjugation

论文作者

Aizik, Dror, Gkioulekas, Ioannis, Levin, Anat

论文摘要

波前校正使得可以在散射组织内部成像荧光颗粒。这需要确定校正面膜要放置在激发和发射路径中。标准方法通过优化各种图像指标选择校正掩码,该过程需要捕获大量图像的过程。为了降低采集成本,迭代相结合技术使用观察到所需的校正掩模是组织传输操作员的特征向量。然后,他们通过电源迭代方法的光学实现来确定此特征向量,该方法需要捕获较少图像的数量级。现有的迭代相结合技术假设了通过组织传输光的线性模型,因此仅适用于完全交联的成像系统。我们首次将这种技术扩展到不连贯的情况。从不同来源发出的光总和不连贯的事实违反了线性模型,并使线性传输操作员不适用。我们表明,令人惊讶的是,由于不相干的求和导致的非线性导致相结合迭代的收敛性加速顺序加速。

Wavefront shaping correction makes it possible to image fluorescent particles deep inside scattering tissue. This requires determining a correction mask to be placed in both excitation and emission paths. Standard approaches select correction masks by optimizing various image metrics, a process that requires capturing a prohibitively large number of images. To reduce acquisition cost, iterative phase conjugation techniques use the observation that the desired correction mask is an eigenvector of the tissue transmission operator. They then determine this eigenvector via optical implementations of the power iteration method, which require capturing orders of magnitude fewer images. Existing iterative phase conjugation techniques assume a linear model for the transmission of light through tissue, and thus only apply to fully-coherent imaging systems. We extend such techniques to the incoherent case for the first time. The fact that light emitted from different sources sums incoherently violates the linear model and makes linear transmission operators inapplicable. We show that, surprisingly, the non-linearity due to incoherent summation results in an order-of-magnitude acceleration in the convergence of the phase conjugation iteration.

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