Comparison of Liver Fibrosis and Function Indices with Extracellular Volume Using Dual-energy CT: A Retrospective Study

Author:

Kokubo Reiji1ORCID,Saito Kazuhiro1ORCID,Yamada Takafumi1ORCID,Tanaka Taro1ORCID,Tajima Yu1ORCID,Suzuki Kunihito1ORCID

Affiliation:

1. Department of Radiology, Tokyo Medical University, Tokyo, Japan

Abstract

Background: Dual-energy computed tomography (DECT) enables the direct measurement of iodine accumulation in the extracellular space. Objective: To compare measures of liver fibrosis and function with extracellular volume (ECV) from iodine/water images using DECT. Methods: Data was obtained from 119 consecutive patients who underwent abdominal DECT. A region of interest was set in the right lobe of the liver, pancreas, spleen, and aorta on iodine density images. ECV was calculated using the following formula: ECV = (1 − hematocrit) × [iodine concentration in the liver (or pancreas, spleen) / iodine concentration in the aorta]. The severity of liver fibrosis was estimated using the aminotransferase/platelet ratio index (APRI) and the Fibrosis-4 (FIB-4) index. Liver function was assessed by the Child-Pugh classification and albumin-bilirubin (ALBI) grade. Data were analyzed by the Spearman rank correlation coefficient, one-way analysis of variance, and post hoc analysis. Results: The correlation between ECV and fibrosis indices (APRI and FIB-4) was only significant, with a weak magnitude for liver ECV quantification at the equilibrium phase (r=0.25 and r=0.20, respectively). The correlations between liver function index and ECV quantification were more robust than with fibrosis index. The highest correlations (r=0.50) were found between ALBI grade and liver ECV at the equilibrium phase. Liver ECV values at the equilibrium phase had a significant difference between ALBI grade 1 vs. 2 and grade 1 vs. 3. Conclusion: Liver ECV quantification by DECT is more suitable for evaluating liver function than liver fibrosis severity.

Publisher

Bentham Science Publishers Ltd.

Subject

Radiology, Nuclear Medicine and imaging

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