Publication | Open Access
Forward model for propagation-based x-ray phase contrast imaging in parallel- and cone-beam geometry
12
Citations
56
References
2019
Year
Image ReconstructionEngineeringHealth SciencesMedical ImagingMicroscopyOther Forward ModelsReconstruction TechniqueBiomedical ImagingCone-beam GeometryForward ModelInverse ProblemsPhoton-counting Computed TomographySynchrotron RadiationRadiographic ImagingX-ray OpticTomographyRadiologyX-ray Imaging
We demonstrate a fast, flexible, and accurate paraxial wave propagation model to serve as a forward model for propagation-based X-ray phase contrast imaging (XPCI) in parallel-beam or cone-beam geometry. This model incorporates geometric cone-beam effects into the multi-slice beam propagation method. It enables rapid prototyping and is well suited to serve as a forward model for propagation-based X-ray phase contrast tomographic reconstructions. Furthermore, it is capable of modeling arbitrary objects, including those that are strongly or multi-scattering. Simulation studies were conducted to compare our model to other forward models in the X-ray regime, such as the Mie and full-wave Rytov solutions.
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