Paper
18 March 2008 3D iterative full and half scan reconstruction in CT architectures with distributed sources
Author Affiliations +
Abstract
In 3rd generation CT systems projection data, generated by X-rays emitted from a single source and passing through the imaged object, are acquired by a single detector covering the entire field of view (FOV). Novel CT system architectures employing distributed sources [1,2] could extend the axial coverage, while removing cone-beam artifacts and improving spatial resolution and dose. The sources can be distributed in plane and/or in the longitudinal direction. We investigate statistical iterative reconstruction of multi-axial data, acquired with simulated CT systems with multiple sources distributed along the in-plane and longitudinal directions. The current study explores the feasibility of 3D iterative Full and Half Scan reconstruction methods for CT systems with two different architectures. In the first architecture the sources are distributed in the longitudinal direction, and in the second architecture the sources are distributed both longitudinally and trans-axially. We used Penalized Weighted Least Squares Transmission Reconstruction (PWLSTR) and incorporated a projector-backprojector model matching the simulated architectures. The proposed approaches minimize artifacts related to the proposed geometries. The reconstructed images show that the investigated architectures can achieve good image quality for very large coverage without severe cone-beam artifacts.
© (2008) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
M. Iatrou, B. De Man, D. Beque, Z. Yin, K. Khare, and T. M. Benson "3D iterative full and half scan reconstruction in CT architectures with distributed sources", Proc. SPIE 6913, Medical Imaging 2008: Physics of Medical Imaging, 691322 (18 March 2008); https://doi.org/10.1117/12.772976
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Cited by 5 scholarly publications.
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KEYWORDS
Sensors

X-ray computed tomography

Computed tomography

Data acquisition

3D image reconstruction

3D image processing

Computer architecture

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