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Digital tomographic compressive holographic reconstruction of three-dimensional objects in transmissive and reflective geometries

机译:透射和反射几何中三维对象的数字层析层析压缩全息重建

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摘要

In this work compressive holography (CH) with multiple projection tomography is applied to solve the inverse ill-posed problem of reconstruction of three-dimensional (3D) objects with high axial accuracy. To visualize the 3D shape, we propose digital tomographic CH, where projections from more than one direction, as in tomographic imaging, can be employed, so that a 3D shape with improved axial resolution can be reconstructed. Also, we propose possible schemes for shadow elimination when the same object is illuminated at multiple angles using a single illuminating beam and using a single CCD. Finally, we adapt CH designed for a Gabor-type setup to a reflective geometry and apply the technique to reflective objects.
机译:在这项工作中,采用具有多次投影层析成像技术的压缩全息术(CH)来解决具有较高轴向精度的三维(3D)物体重建的逆不适定问题。为了可视化3D形状,我们提出了数字层析X射线摄影CH,其中可以采用从多个方向进行的投影(如层析X射线摄影),从而可以重建轴向分辨率提高的3D形状。此外,当使用单个照明光束和单个CCD以多个角度照明同一物体时,我们提出了消除阴影的可能方案。最后,我们将为Gabor型设置设计的CH适应反射几何形状,并将该技术应用于反射对象。

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