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Phase diversity for three-dimensional imaging

机译:三维成像的相位分集

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摘要

Phase diversity (PD) is a powerful technique for estimating wavefront aberrations from two-dimensional images of extended scenes. PD can work with extended incoherent images and, in an adaptive optics system, does not need extra hardware in addition to the deformable mirror. For these reasons, PD should be well suited to aberration measurement in microscopy applications. But, in biological widefield microscopy, the objects being imaged are frequently three-dimensional, and the images contain out-of-focus light. In this paper, we introduce multiplane PD and show that PD can be extended to widefield imaging of three-dimensional objects. This should be particularly useful in the field of biological fluorescence microscopy where the objects are very light sensitive and the aberrations cannot easily be determined.
机译:相位分集(PD)是一种用于从扩展场景的二维图像中估计波前像差的强大技术。 PD可以处理扩展的非相干图像,并且在自适应光学系统中,除了可变形镜之外,不需要额外的硬件。由于这些原因,PD应该非常适合显微镜应用中的像差测量。但是,在生物宽视野显微镜中,要成像的对象通常是三维的,并且图像包含散焦光。在本文中,我们介绍了多平面局部放电,并表明局部放电可以扩展到三维物体的广域成像。这在生物荧光显微镜领域特别有用,在该领域中,物体对光非常敏感,并且像差很难确定。

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