Paper
18 March 2008 An FBP image reconstruction algorithm for x-ray differential phase contrast CT
Zhihua Qi, Guang-Hong Chen
Author Affiliations +
Abstract
Most recently, a novel data acquisition method has been proposed and experimentally implemented for x-ray differential phase contrast computed tomography (DPC-CT), in which a conventional x-ray tube and a Talbot-Lau type interferometer were utilized in data acquisition. The divergent nature of the data acquisition system requires a divergent-beam image reconstruction algorithm for DPC-CT. This paper focuses on addressing this image reconstruction issue. We developed a filtered backprojection algorithm to directly reconstruct the DPC-CT images from acquired projection data. The developed algorithm allows one to directly reconstruct the decrement of the real part of the refractive index from the measured data. In order to accurately reconstruct an image, the data need to be acquired over an angular range of at least 180° plus the fan-angle. Different from the parallel beam data acquisition and reconstruction methods, a 180° rotation angle for data acquisition system does not provide sufficient data for an accurate reconstruction of the entire field of view. Numerical simulations have been conducted to validate the image reconstruction algorithm.
© (2008) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Zhihua Qi and Guang-Hong Chen "An FBP image reconstruction algorithm for x-ray differential phase contrast CT", Proc. SPIE 6913, Medical Imaging 2008: Physics of Medical Imaging, 69132J (18 March 2008); https://doi.org/10.1117/12.772385
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CITATIONS
Cited by 2 patents.
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KEYWORDS
Data acquisition

Image restoration

Reconstruction algorithms

X-rays

Fluctuations and noise

Sensors

Phase contrast

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