Staging of Hepatic Fibrosis: Comparison of Magnetic Resonance Elastography and Shear Wave Elastography in the Same Individuals |
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Authors: | Jeong Hee Yoon Jeong Min Lee Hyun Sik Woo Mi Hye Yu Ijin Joo Eun Sun Lee Ji Young Sohn Kyung Boon Lee Joon Koo Han Byung Ihn Choi |
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Affiliation: | 1Department of Radiology, Seoul National University College of Medicine, Seoul 110-744, Korea.;2Institute of Radiation Medicine, Seoul National University College of Medicine, Seoul 110-744, Korea.;3Department of Pathology, Seoul National University Hospital, Seoul 110-744, Korea. |
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Abstract: | ![]()
ObjectiveTo cross-validate liver stiffness (LS) measured on shear wave elastography (SWE) and on magnetic resonance elastography (MRE) in the same individuals.Materials and MethodsWe included 94 liver transplantation (LT) recipients and 114 liver donors who underwent either MRE or SWE before surgery or biopsy. We determined the technical success rates and the incidence of unreliable LS measurements (LSM) of SWE and MRE. Among the 69 patients who underwent both MRE and SWE, the median and coefficient of variation (CV) of the LSM from each examination were compared and correlated. Areas under the receiver operating characteristic curve in both examinations were calculated in order to exclude the presence of hepatic fibrosis (HF).ResultsThe technical success rates of MRE and SWE were 96.4% and 92.2%, respectively (p = 0.17), and all of the technical failures occurred in LT recipients. SWE showed 13.1% unreliable LSM, whereas MRE showed no such case (p < 0.05). There was moderate correlation in the LSM in both examinations (r = 0.67). SWE showed a significantly larger median LSM and CV than MRE. Both examinations showed similar diagnostic performance for excluding HF (Az; 0.989, 1.000, respectively).ConclusionMRE and SWE show moderate correlation in their LSMs, although SWE shows higher incidence of unreliable LSMs in cirrhotic liver. |
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Keywords: | Hepatic fibrosis Elastography Ultrasound-based elastography Shear wave elastography Magnetic resonance elastography Cross-validation |
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