Optimizing dual-energy CT technique for iodine-based contrast-to-noise ratio
Fatma Terzioglu, Emil Y. Sidky, Jp Phillips, Ingrid Reiser, Guillaume, Bal, and Xiaochuan Pan

TL;DR
This paper presents a systematic method for optimizing dual-energy CT parameters to maximize iodine contrast-to-noise ratio by analyzing noise propagation and deriving optimal settings for tube voltage and virtual monochromatic energy.
Contribution
The study introduces an analytic framework for selecting optimal DECT scan parameters to enhance image quality, including a novel approach to determine the best virtual monochromatic energy and tube settings.
Findings
Optimal VMI energy for maximal CNR is the least noisy synthesized monochromatic image.
Tube potential pair of 60/120 kV yields maximal CNR at 55 KeV VMI.
Using more general weights in image combination does not improve image quality.
Abstract
Purpose: This study proposes a systematic method for determining the optimal x-ray tube settings/energy windows and fluence for minimal noise and maximum CNR in material density images obtained from DECT scans by fixing the subject size and the total radiation dose. Methods: The noise propagation in the process of sinogram and image reconstruction from DECT measurements is analyzed. Analytic estimates for the sinogram and monochromatic image pixel variances and the CNR as functions of tube potentials, fluence, and virtual monochromatic image (VMI) energy are derived, and then used in a phantom experiment as an objective function for optimizing the tube settings to minimize the image noise and maximize the CNR. Results: A non-trivial example that shows the existence of singular solutions to the inversion of sinograms-to-DECT measurements map was presented. Additionally, the optimal VMI…
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Taxonomy
TopicsAdvanced X-ray and CT Imaging · Radiation Dose and Imaging · Welding Techniques and Residual Stresses
