20 October 2021 Simulation on system configuration for stationary head CT using linear carbon nanotube x-ray source arrays
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Abstract

Purpose: The invention of carbon nanotube (CNT) x-ray source arrays has enabled the development of novel imaging systems, including stationary tomosynthesis and stationary computed tomography (CT) with fast data acquisition, mechanically robust structures, and reduced image blur from source–detector motion. In this work, we report the results of simulation studies of potential system configurations for a stationary head CT (s-HCT) using linear CNT x-ray sources and detector arrays.

Approach: We explored s-HCT configurations that utilize one, two, and three linear CNT source arrays. Simulations were implemented using three digital phantoms with both CPU and GPU computing. Sinogram coverage was used for qualitative evaluation of the CT projection collection efficiency for each configuration. A modified low-contrast Shepp–Logan (SL) phantom was implemented for image quality assessment using quantitative metrics. Different iterative reconstruction (IR) methods were compared with both qualitative and quantitative assessments.

Results: Sinogram coverage of s-HCT configurations was sensitive to the number of CNT source arrays and geometry. The simulations suggest that a s-HCT configuration with three planes gives near complete sinogram coverage. Such a configuration enables accurate reconstruction of the low-contrast SL phantom and considerably diminished artifacts caused by the system geometry.

Conclusions: An optimized s-HCT system configuration with three linear CNT x-ray source arrays is feasible. IR algorithms can diminish artifacts caused by sparse and asymmetrical scans. The proposed s-HCT system configuration is currently under construction.

© 2021 Society of Photo-Optical Instrumentation Engineers (SPIE) 2329-4302/2021/$28.00 © 2021 SPIE
Yueting Luo, Derrek Spronk, Yueh Z. Lee, Otto Zhou, and Jianping Lu "Simulation on system configuration for stationary head CT using linear carbon nanotube x-ray source arrays," Journal of Medical Imaging 8(5), 052114 (20 October 2021). https://doi.org/10.1117/1.JMI.8.5.052114
Received: 23 November 2020; Accepted: 11 October 2021; Published: 20 October 2021
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Cited by 5 scholarly publications.
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KEYWORDS
Image quality

Reconstruction algorithms

X-ray computed tomography

Head

X-ray sources

Sensors

Carbon nanotubes

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