Literature DB >> 27552793

Dual energy CT with one full scan and a second sparse-view scan using structure preserving iterative reconstruction (SPIR).

Tonghe Wang1, Lei Zhu.   

Abstract

Conventional dual-energy CT (DECT) reconstruction requires two full-size projection datasets with two different energy spectra. In this study, we propose an iterative algorithm to enable a new data acquisition scheme which requires one full scan and a second sparse-view scan for potential reduction in imaging dose and engineering cost of DECT. A bilateral filter is calculated as a similarity matrix from the first full-scan CT image to quantify the similarity between any two pixels, which is assumed unchanged on a second CT image since DECT scans are performed on the same object. The second CT image from reduced projections is reconstructed by an iterative algorithm which updates the image by minimizing the total variation of the difference between the image and its filtered image by the similarity matrix under data fidelity constraint. As the redundant structural information of the two CT images is contained in the similarity matrix for CT reconstruction, we refer to the algorithm as structure preserving iterative reconstruction (SPIR). The proposed method is evaluated on both digital and physical phantoms, and is compared with the filtered-backprojection (FBP) method, the conventional total-variation-regularization-based algorithm (TVR) and prior-image-constrained-compressed-sensing (PICCS). SPIR with a second 10-view scan reduces the image noise STD by a factor of one order of magnitude with same spatial resolution as full-view FBP image. SPIR substantially improves over TVR on the reconstruction accuracy of a 10-view scan by decreasing the reconstruction error from 6.18% to 1.33%, and outperforms TVR at 50 and 20-view scans on spatial resolution with a higher frequency at the modulation transfer function value of 10% by an average factor of 4. Compared with the 20-view scan PICCS result, the SPIR image has 7 times lower noise STD with similar spatial resolution. The electron density map obtained from the SPIR-based DECT images with a second 10-view scan has an average error of less than 1%.

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Year:  2016        PMID: 27552793      PMCID: PMC6200581          DOI: 10.1088/0031-9155/61/18/6684

Source DB:  PubMed          Journal:  Phys Med Biol        ISSN: 0031-9155            Impact factor:   3.609


  45 in total

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2.  Dual Energy CT lung perfusion imaging--correlation with SPECT/CT.

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3.  Optimization of dual-energy imaging systems using generalized NEQ and imaging task.

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Authors:  Anno Graser; Thorsten R C Johnson; Hersh Chandarana; Michael Macari
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5.  Image reconstruction for sparse-view CT and interior CT-introduction to compressed sensing and differentiated backprojection.

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7.  Accelerated barrier optimization compressed sensing (ABOCS) reconstruction for cone-beam CT: phantom studies.

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Journal:  Phys Med Biol       Date:  2012-11-15       Impact factor: 3.609

Review 9.  Technical principles of dual source CT.

Authors:  Martin Petersilka; Herbert Bruder; Bernhard Krauss; Karl Stierstorfer; Thomas G Flohr
Journal:  Eur J Radiol       Date:  2008-10-07       Impact factor: 3.528

10.  Dual-energy CT lung ventilation/perfusion imaging for diagnosing pulmonary embolism.

Authors:  Long Jiang Zhang; Chang Sheng Zhou; U Joseph Schoepf; Hui Xue Sheng; Sheng Yong Wu; Aleksander W Krazinski; Justin R Silverman; Felix G Meinel; Yan E Zhao; Zong Jun Zhang; Guang Ming Lu
Journal:  Eur Radiol       Date:  2013-06-13       Impact factor: 5.315

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1.  Deep learning-based image quality improvement for low-dose computed tomography simulation in radiation therapy.

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2.  One half-scan dual-energy CT imaging using the Dual-domain Dual-way Estimated Network (DoDa-Net) model.

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3.  Learning-based synthetic dual energy CT imaging from single energy CT for stopping power ratio calculation in proton radiation therapy.

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Journal:  Br J Radiol       Date:  2021-10-28       Impact factor: 3.039

Review 4.  Machine learning in quantitative PET: A review of attenuation correction and low-count image reconstruction methods.

Authors:  Tonghe Wang; Yang Lei; Yabo Fu; Walter J Curran; Tian Liu; Jonathon A Nye; Xiaofeng Yang
Journal:  Phys Med       Date:  2020-07-29       Impact factor: 2.685

5.  Optimal virtual monoenergetic image in "TwinBeam" dual-energy CT for organs-at-risk delineation based on contrast-noise-ratio in head-and-neck radiotherapy.

Authors:  Tonghe Wang; Beth Bradshaw Ghavidel; Jonathan J Beitler; Xiangyang Tang; Yang Lei; Walter J Curran; Tian Liu; Xiaofeng Yang
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6.  Learning-Based Stopping Power Mapping on Dual-Energy CT for Proton Radiation Therapy.

Authors:  Tonghe Wang; Yang Lei; Joseph Harms; Beth Ghavidel; Liyong Lin; Jonathan J Beitler; Mark McDonald; Walter J Curran; Tian Liu; Jun Zhou; Xiaofeng Yang
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Review 7.  A review on medical imaging synthesis using deep learning and its clinical applications.

Authors:  Tonghe Wang; Yang Lei; Yabo Fu; Jacob F Wynne; Walter J Curran; Tian Liu; Xiaofeng Yang
Journal:  J Appl Clin Med Phys       Date:  2020-12-11       Impact factor: 2.102

8.  Simultaneous Image Reconstruction and Element Decomposition for Iodine Contrast Agent Visualization in Multienergy Element-Resolved Cone Beam CT.

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9.  Low-dose material-specific radiography using monoenergetic photons.

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