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自适应相位补偿的超紧凑激光扫描内窥显微镜。

Adaptive phase compensation for ultracompact laser scanning endomicroscopy.

机构信息

Photonics Group, Physics Department, Imperial College London, Prince Consort Road, London SW7 2BW, UK.

出版信息

Opt Lett. 2011 May 1;36(9):1707-9. doi: 10.1364/OL.36.001707.

Abstract

We present an approach to laser scanning endomicroscopy that requires no moving parts and can be implemented with no distal scanners or optics, permitting extremely compact endoscopic probes to be developed. Our approach utilizes a spatial light modulator to correct for phase variations across a fiber imaging bundle and to encode for arbitrary wavefronts at the distal end of the fiber bundle. Thus, it is possible to realize both focusing and beam scanning at the output of the fiber bundle with no distal components. We present proof of principle results to illustrate three-dimensional scanning of the focal spot and exemplar images of a United States Air Force resolution test chart.

摘要

我们提出了一种激光扫描内窥显微镜的方法,该方法不需要运动部件,并且可以在没有远端扫描仪或光学器件的情况下实现,从而可以开发出极其紧凑的内窥镜探头。我们的方法利用空间光调制器来校正光纤成像束中的相位变化,并对光纤束远端的任意波前进行编码。因此,有可能在没有远端组件的情况下实现光纤束输出端的聚焦和光束扫描。我们提出了原理验证结果,以说明焦点的三维扫描和美国空军分辨率测试图表的示例图像。

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