Literature DB >> 28212047

Multimaterial Decomposition Algorithm for the Quantification of Liver Fat Content by Using Fast-Kilovolt-Peak Switching Dual-Energy CT: Clinical Evaluation.

Tomoko Hyodo1, Norihisa Yada1, Masatoshi Hori1, Osamu Maenishi1, Peter Lamb1, Kosuke Sasaki1, Minori Onoda1, Masatoshi Kudo1, Teruhito Mochizuki1, Takamichi Murakami1.   

Abstract

Purpose To assess the clinical accuracy and reproducibility of liver fat quantification with the multimaterial decomposition (MMD) algorithm, comparing the performance of MMD with that of magnetic resonance (MR) spectroscopy by using liver biopsy as the reference standard. Materials and Methods This prospective study was approved by the institutional ethics committee, and patients provided written informed consent. Thirty-three patients suspected of having hepatic steatosis underwent non-contrast material-enhanced and triple-phase dynamic contrast-enhanced dual-energy computed tomography (CT) (80 and 140 kVp) and single-voxel proton MR spectroscopy within 30 days before liver biopsy. Percentage fat volume fraction (FVF) images were generated by using the MMD algorithm on dual-energy CT data to measure hepatic fat content. FVFs determined by using dual-energy CT and percentage fat fractions (FFs) determined by using MR spectroscopy were compared with histologic steatosis grade (0-3, as defined by the nonalcoholic fatty liver disease activity score system) by using Jonckheere-Terpstra trend tests and were compared with each other by using Bland-Altman analysis. Real non-contrast-enhanced FVFs were compared with triple-phase contrast-enhanced FVFs to determine the reproducibility of MMD by using Bland-Altman analyses. Results Both dual-energy CT FVF and MR spectroscopy FF increased with increasing histologic steatosis grade (trend test, P < .001 for each). The Bland-Altman plot of dual-energy CT FVF and MR spectroscopy FF revealed a proportional bias, as indicated by the significant positive slope of the line regressing the difference on the average (P < .001). The 95% limits of agreement for the differences between real non-contrast-enhanced and contrast-enhanced FVFs were not greater than about 2%. Conclusion The MMD algorithm quantifying hepatic fat in dual-energy CT images is accurate and reproducible across imaging phases. © RSNA, 2017 Online supplemental material is available for this article.

Entities:  

Mesh:

Year:  2017        PMID: 28212047     DOI: 10.1148/radiol.2017160130

Source DB:  PubMed          Journal:  Radiology        ISSN: 0033-8419            Impact factor:   11.105


  16 in total

1.  The correlation between hepatic fat fraction evaluated by dual-energy computed tomography and high-risk coronary plaques in patients with non-alcoholic fatty liver disease.

Authors:  Rui Zhan; Rongxing Qi; Sheng Huang; Yang Lu; Xiaoyu Wang; Jiashen Jiang; Xiwu Ruan; Anyi Song
Journal:  Jpn J Radiol       Date:  2021-04-05       Impact factor: 2.374

Review 2.  Quantitative dual-energy CT techniques in the abdomen.

Authors:  Giuseppe V Toia; Achille Mileto; Carolyn L Wang; Dushyant V Sahani
Journal:  Abdom Radiol (NY)       Date:  2021-09-01

Review 3.  Dual-energy CT in diffuse liver disease: is there a role?

Authors:  Khaled Y Elbanna; Bahar Mansoori; Achille Mileto; Patrik Rogalla; Luís S Guimarães
Journal:  Abdom Radiol (NY)       Date:  2020-08-08

4.  Simultaneous hepatic iron and fat quantification with dual-energy CT in a rabbit model of coexisting iron and fat.

Authors:  Yun Peng; Jing Ye; Chang Liu; Hongru Jia; Jun Sun; Jun Ling; Martin Prince; Chang Li; Xianfu Luo
Journal:  Quant Imaging Med Surg       Date:  2021-05

5.  Comparison of Multimaterial Decomposition Fat Fraction with DECT and Proton Density Fat Fraction with IDEAL IQ MRI for Quantification of Liver Steatosis in a Population Exposed to Chemotherapy.

Authors:  Giuseppe Corrias; Marco Erta; Marcello Sini; Claudia Sardu; Luca Saba; Usman Mahmood; Sandra Huicochea Castellanos; David Bates; Nicola Mondanelli; Brian Thomsen; Gabriella Carollo; Peter Sawan; Lorenzo Mannelli
Journal:  Dose Response       Date:  2021-04-20       Impact factor: 2.658

6.  Multimaterial decomposition algorithm for quantification of fat in hepatocellular carcinoma using rapid kilovoltage-switching dual-energy CT: A comparison with chemical-shift MR imaging.

Authors:  Takashi Ota; Masatoshi Hori; Kosuke Sasaki; Hiromitsu Onishi; Atsushi Nakamoto; Mitsuaki Tatsumi; Hideyuki Fukui; Kazuya Ogawa; Noriyuki Tomiyama
Journal:  Medicine (Baltimore)       Date:  2021-05-21       Impact factor: 1.817

Review 7.  Quantitative Imaging in Pediatric Hepatobiliary Disease.

Authors:  Haesung Yoon; Hyun Joo Shin; Myung Joon Kim; Mi Jung Lee
Journal:  Korean J Radiol       Date:  2019-09       Impact factor: 3.500

8.  Role of Magnetic Resonance Imaging in the Monitoring of Patients with Nonalcoholic Fatty Liver Disease: Comparison with Ultrasonography, Lipid Profile, and Body Mass Index.

Authors:  Nikhil Makhija; Naval K Vikram; Gurdeep Kaur; Raju Sharma; Deep N Srivastava; Kumble S Madhusudhan
Journal:  J Clin Exp Hepatol       Date:  2019-09-20

9.  Multisite multivendor validation of a quantitative MRI and CT compatible fat phantom.

Authors:  Ruiyang Zhao; Diego Hernando; David T Harris; Louis A Hinshaw; Ke Li; Lakshmi Ananthakrishnan; Mustafa R Bashir; Xinhui Duan; Mounes Aliyari Ghasabeh; Ihab R Kamel; Carolyn Lowry; Mahadevappa Mahesh; Daniele Marin; Jessica Miller; Perry J Pickhardt; Jean Shaffer; Takeshi Yokoo; Jean H Brittain; Scott B Reeder
Journal:  Med Phys       Date:  2021-07-09       Impact factor: 4.071

Review 10.  Quantitative ultrasound approaches for diagnosis and monitoring hepatic steatosis in nonalcoholic fatty liver disease.

Authors:  Amir M Pirmoazen; Aman Khurana; Ahmed El Kaffas; Aya Kamaya
Journal:  Theranostics       Date:  2020-03-04       Impact factor: 11.556

View more

北京卡尤迪生物科技股份有限公司 © 2022-2023.