Multi-Energy Blended CBCT Spectral Imaging Using a Spectral Modulator with Flying Focal Spot (SMFFS)
Yifan Deng, Hao Zhou, Zhilei Wang, Adam S. Wang, and Hewei Gao

TL;DR
This paper introduces a novel stationary spectral modulator with flying focal spot (SMFFS) for cone-beam CT, effectively addressing scatter and spectral challenges to enable accurate spectral imaging and material decomposition.
Contribution
The work presents the first development of SMFFS technology combined with a scatter-decoupled material decomposition method for improved CBCT spectral imaging.
Findings
SMFFS achieves better material decomposition and CT number accuracy.
Experimental results show reduced artifacts and improved quantitative imaging.
Focal spot deflections within ~2 mm share similar scatter distributions.
Abstract
Conventional cone-beam CT (CBCT) can be easily compromised by scatter and beam hardening artifacts, and the entanglement of scatter and spectral effects introduces additional complexity. In this work, we present the first attempt to develop a stationary spectral modulator with flying focal spot (SMFFS) technology as a promising, low-cost approach to accurately solving the X-ray scattering problem and physically enabling spectral imaging in a unified framework. To deal with the intertwined scatter-spectral challenge, we propose a novel scatter-decoupled material decomposition (SDMD) method for SMFFS based on a hypothesis of scatter similarity. Monte Carlo simulations of a pure-water cylinder phantom with different focal spot deflections show that focal spot deflections within a range of ~2 mm share quite similar scatter distributions overall. Numerical simulations using a clinical…
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Taxonomy
TopicsAdvanced X-ray and CT Imaging · Radiation Dose and Imaging · Digital Radiography and Breast Imaging
