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Three-dimensional motion correction using speckle and phase for in vivo computed optical interferometric tomography

机译:使用斑点和相位进行三维运动校正以进行体内计算机断层扫描

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摘要

Over the years, many computed optical interferometric techniques have been developed to perform high-resolution volumetric tomography. By utilizing the phase and amplitude information provided with interferometric detection, post-acquisition corrections for defocus and optical aberrations can be performed. The introduction of the phase, though, can dramatically increase the sensitivity to motion (most prominently along the optical axis). In this paper, we present two algorithms which, together, can correct for motion in all three dimensions with enough accuracy for defocus and aberration correction in computed optical interferometric tomography. The first algorithm utilizes phase differences within the acquired data to correct for motion along the optical axis. The second algorithm utilizes the addition of a speckle tracking system using temporally- and spatially-coherent illumination to measure motion orthogonal to the optical axis. The use of coherent illumination allows for high-contrast speckle patterns even when imaging apparently uniform samples or when highly aberrated beams cannot be avoided.
机译:多年来,已开发出许多计算机光学干涉技术来执行高分辨率体积层析成像。通过利用干涉检测提供的相位和幅度信息,可以对散焦和光学像差进行采集后校正。但是,引入相位可以显着提高运动灵敏度(最显着地沿光轴方向)。在本文中,我们提出了两种算法,它们可以一起对所有三个维度的运动进行校正,并且具有足够的精度,可以在计算的光学干涉层析成像中进行散焦和像差校正。第一算法利用所获取的数据内的相位差来校正沿光轴的运动。第二种算法利用了斑点跟踪系统的附加功能,该系统使用时间和空间相干照明来测量与光轴正交的运动。即使在对明显均匀的样本成像或无法避免高像差的光束成像时,相干照明的使用也可以实现高对比度的斑点图案。

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