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Cai, S., Simonsson, C., Karlsson, M., Balkhed, W., Tellman, J., Ignatova, S., . . . Lundberg, P. (2026). Chronic Liver Disease: Assessing Inflammation and Fibrosis Using Three‐Dimensional MR Elastography With Same‐Day Biopsy in a Prospective Cohort. Journal of Magnetic Resonance Imaging, 64(1), 306-319, Article ID jmri.70319.
Open this publication in new window or tab >>Chronic Liver Disease: Assessing Inflammation and Fibrosis Using Three‐Dimensional MR Elastography With Same‐Day Biopsy in a Prospective Cohort
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2026 (English)In: Journal of Magnetic Resonance Imaging, ISSN 1053-1807, E-ISSN 1522-2586, Vol. 64, no 1, p. 306-319, article id jmri.70319Article in journal (Refereed) Published
Abstract [en]

Background: Three-dimensional (3D) MR elastography (MRE) derives viscoelastic parameters that may reflect inflammation, but their frequency dependence and the influence of steatosis on inflammation grading and fibrosis staging remain unclear.

Purpose: To investigate 3D multifrequency MRE for assessing hepatic inflammation, fibrosis stage across frequencies, and the influence of steatosis.

Study Type: Prospective.

Population: Sixty-four (40 men, median age: 58 years) participants with chronic liver disease (CLD); 21 (8 men, median age:28 years) healthy volunteers.

Field Strength/Sequence: 3-T; gradient-echo sequence with mechanical vibrations at low (16.7 and 18 Hz), medium (33.4 and 36 Hz), and high (50.1 and 54 Hz) frequencies.

Assessment: In CLD participants, MRE-derived viscoelastic parameters, shear stiffness, storage modulus, loss modulus, and damping ratio were compared with histologically assessed fibrosis, inflammation, and steatosis. MRE test–retest repeatability over 10 min was evaluated in healthy volunteers.

Statistical Tests: Wilcoxon rank sum test, Spearman's correlation, multivariable regression analysis, and area under the receiver operating curve (AUROC). A p value of < 0.05 was considered statistically significant.

Results: Inflammation was significantly independently associated with damping ratio at medium frequency, which showed moderate performance for grading inflammation (AUROC = 0.76–0.83, sensitivity = 0.83–0.84, specificity = 0.70–0.79). Fibrosis staging using shear stiffness and moduli showed high diagnostic performance (AUROC = 0.82–0.95), with comparable accuracy between medium and high frequencies (p = 0.327–0.896). Steatosis was not significantly correlated with MRE overall (p = 0.212–0.459), but was significantly associated with 19% higher stiffness and 20% higher loss modulus at medium frequency in CLD participants without fibrosis or inflammation.

Data Conclusion: Medium frequency 3D MRE demonstrated an independent association with inflammation while preserving accurate fibrosis assessment. Steatosis seemed not to confound MRE-based evaluation.

Level of Evidence: 1.

Technical Efficacy: Stage 2.

Plain Language Summary: Chronic liver disease can cause both inflammation and scarring (fibrosis). Accurate assessment usually requires a biopsy, which is invasive. This study evaluated a noninvasive imaging method called three-dimensional magnetic resonance elastography (3D MRE) in patients who underwent same-day liver biopsy. The researchers tested whether different vibration frequencies could detect inflammation and fibrosis. They found that medium frequency measurements were associated with liver inflammation while still accurately identifying fibrosis. Fat accumulation in the liver did not significantly affect the results. These findings suggest that 3D MRE may help medical doctors assess liver inflammation and fibrosis noninvasively in a single examination.

Place, publisher, year, edition, pages
John Wiley & Sons, 2026
Keywords
Chronic liver disease, Fibrosis, Inflammation, MR elastography, Steatosis
National Category
Gastroenterology and Hepatology Medical Imaging Radiology and Medical Imaging
Identifiers
urn:nbn:se:liu:diva-222446 (URN)10.1002/jmri.70319 (DOI)001732121800001 ()41924972 (PubMedID)2-s2.0-105034898236 (Scopus ID)
Note

Funding: This work was supported by Vinnova (Sweden's Innovation Agency), the Swedish Research Council for Engineering Sciences and Natural Sciences (VR/NT), 2020-04826, and ALF funding (Avtal om Läkarutbildning och Forskning; Agreement on Medical Education and Research) from Region Östergötland (Östergötland County Council).

Available from: 2026-04-02 Created: 2026-04-02 Last updated: 2026-06-26
Bartholomä, W., Cai, S., Simonsson, C., Karlsson, M., Kechagias, S., Woisetschläger, M., . . . Lundberg, P. (2026). Pharmacokinetic modelling of MRI-based liver function for risk assessment in primary sclerosing cholangitis: a prospective pilot study. European Radiology Experimental, 10(1), Article ID 91.
Open this publication in new window or tab >>Pharmacokinetic modelling of MRI-based liver function for risk assessment in primary sclerosing cholangitis: a prospective pilot study
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2026 (English)In: European Radiology Experimental, E-ISSN 2509-9280, Vol. 10, no 1, article id 91Article in journal (Refereed) Published
Abstract [en]

Objective: Primary sclerosing cholangitis (PSC) is a rare broin ammatory hepatobiliary disease with a highly variable clinical course. Identifying patients at risk for poor outcomes remains challenging. Magnetic resonance imaging (MRI)-based approaches such as DiStrict, Anali score, and relative enhancement (RE) show promise but are limited by operator dependency or static measurements. This study explored pharmacokinetic modelling of liver function as a quantitative imaging biomarker for risk assessment in PSC.

Materials and methods: A prospective cohort of 26 PSC patients underwent up to ve annual MRI examinations with follow-up up to 7.5 years. Clinical endpoints included liver transplantation, decompensated cirrhosis, and cholangiocarcinoma. Correlation and receiver operating characteristics (ROC) analyses compared the pharmacokinetic model with Anali scores, RE, model for end-stage liver disease (MELD), and the Amsterdam–Oxford Model (AOM).

Results: The pharmacokinetic model (ksingle) correlated signi cantly with MELD (r = -0.429, p= 0.029), AOM (r = -0.557, p= 0.003), and endpoint events (r = -0.605, p= 0.001). ROC analysis showed excellent discrimination for ki,single (area under the curve [AUC]= 0.943) outperformed Anali scores (AUC= 0.800–0.829) and comparable to MELD (AUC= 0.857) and AOM (AUC= 0.900).

Conclusion: Pharmacokinetic liver function modelling correlated strongly with MELD and AOM, effectively identifying high-risk PSC patients.

Relevance statement: Pharmacokinetic liver function modelling detects functional impairment in PSC, correlating well with established tools such as the AOM. As an objective, quantitative imaging biomarker, this method may complement established risk scores and aid in the identi cation of patients at risk of adverse outcomes.

Key Points:

● Pharmacokinetic modelling estimates changes in liver function based on MRI.

● These estimates can be used as a prognostic tool in PSC.

● The model’s prognostic performance was comparable to established clinical tests.

Place, publisher, year, edition, pages
Springer, 2026
Keywords
Cholangitis (sclerosing), Disease progression, End stage liver disease, Magnetic resonance imaging, Prognosis
National Category
Gastroenterology and Hepatology Radiology and Medical Imaging
Identifiers
urn:nbn:se:liu:diva-225296 (URN)10.1186/s41747-026-00764-5 (DOI)001796440900001 ()42313299 (PubMedID)2-s2.0-105042192710 (Scopus ID)
Note

Funding: Wolf C. Bartholomä was supported by Regionala forsknings- och utvecklingsmedel för doktorander (RFoU doctoral funding; Regional Research and Development Funding for PhD Students), Region Östergötland (Östergötland County Council). Peter Lundberg was supported by funding from Vinnova (Sweden’s Innovation Agency), the Swedish Research Council for Engineering Sciences and Natural Sciences (VR/NT. Grant number: 2020-04826), and ALF funding (Avtal om Läkarutbildning och Forskning; Agreement on Medical Education and Research) from Region Östergötland (Östergötland County Council). Open access funding provided by Linköping University.

Available from: 2026-06-19 Created: 2026-06-19 Last updated: 2026-08-21
Ordinola, A., Cai, S., Lundberg, P., Bai, R. & Özarslan, E. (2023). On the sampling strategies and models for measuring diffusion exchange with a double diffusion encoding sequence. Magnetic Resonance Letters, 3, 232-247
Open this publication in new window or tab >>On the sampling strategies and models for measuring diffusion exchange with a double diffusion encoding sequence
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2023 (English)In: Magnetic Resonance Letters, ISSN 2772-5162, Vol. 3, p. 232-247Article in journal (Refereed) Published
Abstract [en]

Water exchange between the different compartments of a heterogeneous specimen can be characterized via diffusion magnetic resonance imaging (dMRI). Many analysis frameworks using dMRI data have been proposed to describe exchange, often using a double diffusion encoding (DDE) stimulated echo sequence. Techniques such as diffusion exchange weighted imaging (DEWI) and the filter exchange and rapid exchange models, use a specific subset of the full space DDE signal. In this work, a general representation of the DDE signal was employed with different sampling schemes (namely constant �1, diagonal and anti-diagonal) from the data reduction models to estimate exchange. A near-uniform sampling scheme was proposed and compared with the other sampling schemes. The filter exchange and rapid exchange models were also applied to estimate exchange with their own subsampling schemes. These subsampling schemes and models were compared on both simulated data and experimental data acquired with a benchtop MR scanner. In synthetic data, the diagonal and near-uniform sampling schemes performed the best due to the consistency of their estimates with the ground truth. In experimental data, the shifted diagonal and near-uniform sampling schemes outperformed the others, yielding the most consistent estimates with the full space estimation. The results suggest the feasibility of measuring exchange using a general representation of the DDE signal along with variable sampling schemes. In future studies, algorithms could be further developed for the optimization of sampling schemes, as well as incorporating additional properties, such as geometry and diffusion anisotropy, into exchange frameworks.

Place, publisher, year, edition, pages
KeAi Publishing Communications, 2023
Keywords
Diffusion MRI; Water exchange; Sampling schemes; Double diffusion encoding
National Category
Medical Engineering
Identifiers
urn:nbn:se:liu:diva-198024 (URN)10.1016/j.mrl.2023.05.003 (DOI)001222151400001 ()
Funder
The Swedish Foundation for International Cooperation in Research and Higher Education (STINT)Swedish Research Council
Note

Funding agencies:This research was funded by the Swedish Foundation for International Cooperation in Research and Higher Education (STINT), and the Swedish Research Council (Dnr 2022–04715).

Available from: 2023-09-22 Created: 2023-09-22 Last updated: 2024-05-31Bibliographically approved
Organisations
Identifiers
ORCID iD: ORCID iD iconorcid.org/0000-0002-5713-6385

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