A backprojection-filtration algorithm for nonstandard spiral cone-beam CT with an n-PI-window

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Abstract

For applications in bolus-chasing computed tomography (CT) angiography and electron-beam micro-CT, the backprojection-filtration (BPF) formula developed by Zou and Pan was recently generalized by Ye et al to reconstruct images from cone-beam data collected along a rather flexible scanning locus, including a nonstandard spiral. A major implication of the generalized BPF formula is that it can be applied for n-PI-window-based reconstruction in the nonstandard spiral scanning case. In this paper, we design an n-PI-window-based BPF algorithm, and report the numerical simulation results with the 3D Shepp-Logan phantom and Defrise disk phantom. The proposed BPF algorithm consists of three steps: cone-beam data differentiation, weighted backprojection and inverse Hilbert filtration. Our simulated results demonstrate the feasibility and merits of the proposed algorithm. © 2005 IOP Publishing Ltd.

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Yu, H., Ye, Y., Zhao, S., & Wang, G. (2005). A backprojection-filtration algorithm for nonstandard spiral cone-beam CT with an n-PI-window. Physics in Medicine and Biology, 50(9), 2099–2111. https://doi.org/10.1088/0031-9155/50/9/012

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