Super resolution dual-energy cone-beam CT imaging with dual-layer flat-panel detector
Ting Su, Jiongtao Zhu, Xin Zhang, Dong Zeng, Yuhang Tan, Han Cui,, Hairong Zheng, Jianhua Ma, Dong Liang, Yongshuai Ge

TL;DR
This paper introduces suRi, a super resolution dual-energy CBCT imaging method using dual-layer FPD, which enhances spatial resolution and imaging speed simultaneously, overcoming traditional limitations in medical imaging.
Contribution
The paper proposes a novel super resolution technique with sub-pixel shifted binning for dual-layer FPDs, enabling high-resolution, high-speed dual-energy CBCT imaging.
Findings
Improved spatial resolution by 46.15% in experiments.
Enhanced imaging speed due to shifted binning strategy.
Validated effectiveness with physical phantoms and biological specimens.
Abstract
For medical cone-beam computed tomography (CBCT) imaging, the native receptor array of the flat-panel detector (FPD) is usually binned into a reduced matrix size. By doing so, the signal readout speed can be increased by over 4-9 times at the expense of sacrificing the spatial resolution by at least 50%-67%. Clearly, such tradition poses a main bottleneck in generating high spatial resolution and high temporal resolution CBCT images at the same time. In addition, the conventional FPD is also difficult in generating dual-energy CBCT images. In this paper, we propose an innovative super resolution dual-energy CBCT imaging method, named as suRi, based on dual-layer FPD (DL-FPD) to overcome these aforementioned difficulties at once. With suRi, specifically, an 1D or 2D sub-pixel (half pixel in this study) shifted binning is applied to replace the conventionally aligned binning to double the…
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Taxonomy
TopicsAdvanced X-ray and CT Imaging · Medical Imaging Techniques and Applications · Advanced X-ray Imaging Techniques
