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Unified fast reconstruction algorithm for conventional, phase-contrast, and diffraction tomography. | LitMetric

AI Article Synopsis

  • A new method for 3D reconstruction of objects uses transmission images taken from different lighting angles, applicable to various imaging techniques like x-rays and electron microscopy.
  • The algorithm addresses both phase retrieval and Ewald sphere curvature for improved accuracy, while also averaging multiple scattering effects.
  • A fast, numerical software code has been created for this method, tested with both simulated and real data, and is now available for public use.

Article Abstract

A unified method for three-dimensional reconstruction of objects from transmission images collected at multiple illumination directions is described. The method may be applicable to experimental conditions relevant to absorption-based, phase-contrast, or diffraction imaging using x rays, electrons, and other forms of penetrating radiation or matter waves. Both the phase retrieval (also known as contrast transfer function correction) and the effect of Ewald sphere curvature (in the cases with a shallow depth of field and significant in-object diffraction) are incorporated in the proposed algorithm and can be taken into account. Multiple scattering is not treated explicitly but can be mitigated as a result of angular averaging that constitutes an essential feature of the method. The corresponding numerical algorithm is based on three-dimensional gridding which allows for fast computational implementation, including a straightforward parallelization. The algorithm can be used with any scanning geometry involving plane-wave illumination. A software code implementing the proposed algorithm has been developed, tested on simulated and experimental image data, and made publicly available.

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Source
http://dx.doi.org/10.1364/JOSAA.468350DOI Listing

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