Literature DB >> 31723575

PET Image Deblurring and Super-Resolution with an MR-Based Joint Entropy Prior.

Tzu-An Song1, Fan Yang1, Samadrita Roy Chowdhury1, Kyungsang Kim2, Keith A Johnson2, Georges El Fakhri2, Quanzheng Li2, Joyita Dutta1.   

Abstract

The intrinsically limited spatial resolution of PET confounds image quantitation. This paper presents an image deblurring and super-resolution framework for PET using anatomical guidance provided by high-resolution MR images. The framework relies on image-domain post-processing of already-reconstructed PET images by means of spatially-variant deconvolution stabilized by an MR-based joint entropy penalty function. The method is validated through simulation studies based on the BrainWeb digital phantom, experimental studies based on the Hoffman phantom, and clinical neuroimaging studies pertaining to aging and Alzheimer's disease. The developed technique was compared with direct deconvolution and deconvolution stabilized by a quadratic difference penalty, a total variation penalty, and a Bowsher penalty. The BrainWeb simulation study showed improved image quality and quantitative accuracy measured by contrast-to-noise ratio, structural similarity index, root-mean-square error, and peak signal-to-noise ratio generated by this technique. The Hoffman phantom study indicated noticeable improvement in the structural similarity index (relative to the MR image) and gray-to-white contrast-to-noise ratio. Finally, clinical amyloid and tau imaging studies for Alzheimer's disease showed lowering of the coefficient of variation in several key brain regions associated with two target pathologies.

Entities:  

Keywords:  MR; PET; deblurring; joint entropy; partial volume correction; super-resolution

Year:  2019        PMID: 31723575      PMCID: PMC6853071          DOI: 10.1109/TCI.2019.2913287

Source DB:  PubMed          Journal:  IEEE Trans Comput Imaging


  44 in total

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Journal:  Phys Med Biol       Date:  2010-01-07       Impact factor: 3.609

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7.  Regional analysis of striatal and cortical amyloid deposition in patients with Alzheimer's disease.

Authors:  Kenji Ishibashi; Kiichi Ishiwata; Jun Toyohara; Shigeo Murayama; Kenji Ishii
Journal:  Eur J Neurosci       Date:  2014-06-02       Impact factor: 3.386

8.  Correction of PET data for partial volume effects in human cerebral cortex by MR imaging.

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Journal:  J Comput Assist Tomogr       Date:  1990 Jul-Aug       Impact factor: 1.826

9.  [F-18]AV-1451 positron emission tomography retention in choroid plexus: More than "off-target" binding.

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Journal:  Ann Neurol       Date:  2016-07-07       Impact factor: 10.422

10.  Non-local means denoising of dynamic PET images.

Authors:  Joyita Dutta; Richard M Leahy; Quanzheng Li
Journal:  PLoS One       Date:  2013-12-05       Impact factor: 3.240

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  7 in total

1.  PET image denoising using unsupervised deep learning.

Authors:  Jianan Cui; Kuang Gong; Ning Guo; Chenxi Wu; Xiaxia Meng; Kyungsang Kim; Kun Zheng; Zhifang Wu; Liping Fu; Baixuan Xu; Zhaohui Zhu; Jiahe Tian; Huafeng Liu; Quanzheng Li
Journal:  Eur J Nucl Med Mol Imaging       Date:  2019-08-29       Impact factor: 9.236

2.  PET image super-resolution using generative adversarial networks.

Authors:  Tzu-An Song; Samadrita Roy Chowdhury; Fan Yang; Joyita Dutta
Journal:  Neural Netw       Date:  2020-02-03

3.  Super-Resolution PET Imaging Using Convolutional Neural Networks.

Authors:  Tzu-An Song; Samadrita Roy Chowdhury; Fan Yang; Joyita Dutta
Journal:  IEEE Trans Comput Imaging       Date:  2020-01-06

Review 4.  Artificial Intelligence-Based Image Enhancement in PET Imaging: Noise Reduction and Resolution Enhancement.

Authors:  Juan Liu; Masoud Malekzadeh; Niloufar Mirian; Tzu-An Song; Chi Liu; Joyita Dutta
Journal:  PET Clin       Date:  2021-10

5.  Parameter-Transferred Wasserstein Generative Adversarial Network (PT-WGAN) for Low-Dose PET Image Denoising.

Authors:  Yu Gong; Hongming Shan; Yueyang Teng; Ning Tu; Ming Li; Guodong Liang; Ge Wang; Shanshan Wang
Journal:  IEEE Trans Radiat Plasma Med Sci       Date:  2020-09-21

6.  CT-less Direct Correction of Attenuation and Scatter in the Image Space Using Deep Learning for Whole-Body FDG PET: Potential Benefits and Pitfalls.

Authors:  Jaewon Yang; Jae Ho Sohn; Spencer C Behr; Grant T Gullberg; Youngho Seo
Journal:  Radiol Artif Intell       Date:  2020-12-02

7.  Effect of Denoising and Deblurring 18F-Fluorodeoxyglucose Positron Emission Tomography Images on a Deep Learning Model's Classification Performance for Alzheimer's Disease.

Authors:  Min-Hee Lee; Chang-Soo Yun; Kyuseok Kim; Youngjin Lee
Journal:  Metabolites       Date:  2022-03-07
  7 in total

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