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A low error reconstruction method for confocal holography to determine 3-dimensional properties

机译:共聚焦全息术确定3维特性的低误差重建方法

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A confocal holography microscope developed at the University of Victoria uniquely combines holography with a scanning confocal microscope to non-intrusively measure fluid temperatures in three-dimensions [1] (Herring, 1997), [2] (Abe and Iwasaki, 1999), [3] Qacquemin et al., 2005). The Confocal Scanning Laser Holography (CSLH) microscope was built and tested to verify the concept of 3D temperature reconstruction from scanned holograms. The CSLH microscope used a focused laser to non-intrusively probe a heated fluid specimen. The focused beam probed the specimen instead of a collimated beam in order to obtain different phase-shift data for each scan position. A collimated beam produced the same information for scanning along the optical propagation z-axis. No rotational scanning mechanisms were used in the CSLH microscope which restricted the scan angle to the cone angle of the probe beam. Limited viewing angle scanning from a single view point window produced a challenge for tomographic 3D reconstruction. The reconstruction matrices were either singular or ill-conditioned making reconstruction with significant error or impossible. Establishing boundary conditions with a particular scanning geometry resulted in a method of reconstruction with low error referred to as "wily". The wily reconstruction method can be applied to microscopy situations requiring 3D imaging where there is a single viewpoint window, a probe beam with high numerical aperture, and specified boundary conditions for the specimen. The issues and progress of the wily algorithm for the CSLH microscope are reported herein.
机译:维多利亚大学开发的共聚焦全息显微镜将全息技术与扫描共聚焦显微镜独特地结合在一起,可以非侵入性地测量三维温度[1](Herring,1997),[2](Abe and Iwasaki,1999),[ 3] Qacquemin等,2005)。共聚焦扫描激光全息术(CSLH)显微镜的构建和测试可以验证从扫描全息图重建3D温度的概念。 CSLH显微镜使用聚焦激光以非侵入方式探测加热的流体样本。聚焦光束探测样品而不是准直光束,以便为每个扫描位置获得不同的相移数据。准直光束产生相同的信息,以便沿着光传播z轴进行扫描。在CSLH显微镜中未使用旋转扫描机制,该机制将扫描角度限制在探测光束的锥角范围内。从单个视点窗口进行有限的视角扫描对X线断层摄影3D重建提出了挑战。重建矩阵是奇异的或病态的,使得重建存在明显的错误或不可能。建立具有特定扫描几何形状的边界条件导致了一种称为“ wily”的低误差重建方法。明智的重构方法可以应用于需要3D成像的显微镜情况,其中只有一个视点窗口,具有高数值孔径的探测光束以及标本的指定边界条件。本文报道了CSLH显微镜的wily算法的问题和进展。

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