3D-MRE and 2D-MRE for Assessing Cirrhosis and Portal Hypertension
For patients and families
In plain language
An automatic summary of structured registry data. It is an orientation aid, not a substitute for the official protocol or a physician assessment.
- What is being studied
- The protocol lists: 3D-MRE, HVPG, 2D-MRE, HVPG.
- Who it may be relevant to
- Registry conditions: Cirrhosis, Liver Portal Hypertension. Basic parameters: 18 years — 75 years · All.
- What needs checking
- Age, condition and sex are only basic indicators. Prior treatment, laboratory values and other mandatory requirements appear in the eligibility criteria below.
- Where it takes place
- China
- Next step
- Save the trial, show it to the treating physician, and confirm current recruitment with the study center. Costs, documents and travel →
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Official title
Three-dimensional MR Elastography and Two-dimensional MR Elastography for Assessing Cirrhosis and Portal Hypertension:A Prospective Multicenter Study
Overview
How to construct a novel, non-invasive, accurate, and convenient method to achieve prediction of hepatic venous pressure gradient (HVPG) is an important general problem in the management of portal hypertension in cirrhosis. We plan to compare the ability of three demensional-magnetic resonance elastography (3D-MRE) to two demensional-magnetic resonance elastography (2D-MRE) to establish a risk stratification system and perform tailored management for portal hypertension in cirrhosis.
Detailed description
China suffers the heaviest burden of liver disease in the world. The number of chronic liver disease is more than 400 million. Either viral-related hepatitis, alcoholic hepatitis, or metabolic-related fatty hepatitis, etc. may progress to cirrhosis, which greatly threatens public health. Portal hypertension is a critical risk factor that correlates with clinical prognosis of patients with cirrhosis. According to the Consensus on clinical application of hepatic venous pressure gradient in China (2018), hepatic venous pressure gradient (HVPG) greater than 10,12,16,20 mmHg correspondingly predicts different outcomes of patients with cirrhosis portal hypertension. It is of great significance to establish a risk stratification system and perform tailored management for portal hypertension in cirrhosis. As a universal gold standard for diagnosing and monitoring portal hypertension, HVPG remains limitation for clinical application due to its invasiveness. How to construct a novel, non-invasive, accurate, and convenient method to achieve prediction of HVPG is an important general problem in the management of portal hypertension in cirrhosis. MR elastography allows for basic viscoelastic modeling of tissue, partitioning the complex shear modulus intoelastic components (eg, storage modulus) and viscous components (eg, lossmodulus and damping ratio \[DR\]). In previous studies, scholars have studied 2d MR elastography in cirrhosis to identify specific hepatic pathophysiologic interrelations. However, these mechanical properties of tissue measured with use of 3D MR elastography have yet to be investigated in cirrhosis to identify specific hepatic pathophysiologic interrelations. The investigators hypothesize that these mechanical properties might be valid presumptive surrogates of cirrhosis and portal hypertension, perhaps capable of supplanting liver biopsy or other invasive diagnostic interventions. This project aims to compare the ability of three demensional-magnetic resonance elastography (3D-MRE) to two demensional-magnetic resonance elastography (2D-MRE) to establish a risk stratification system and perform tailored management for portal hypertension in cirrhosis.
Interventions
- Device 3D-MRE
All imaging studies were performed by using a 3.0-T MRI system (Signa HDx, GE Healthcare) with an eight-channel phasedarray body coil. - Device HVPG
HVPG measurements are performed by well-trained interventional radiologists in accordance with standard operating procedures - Device 2D-MRE
All imaging studies were performed by using a 3.0-T MRI system (Signa HDx, GE Healthcare) with an eight-channel phasedarray body coil. - Device HVPG
HVPG measurements are performed by well-trained interventional radiologists in accordance with standard operating procedures
Primary outcome measures
- Accuracy of the features of 3D-MRE and 2D-MRE for assessing portal hypertension in cirrhosis. [Time frame: 12 months]
Eligibility criteria
Inclusion criteria
- age > 18 years old
- confirmed cirrhosis (laboratory, imaging and clinical symptoms)
- with 3D-MRE and 2D-MRE within 1 month prior to HVPG measurement
- written informed consent
Exclusion criteria
- any previous liver or spleen surgery
- liver cancer; chronic acute liver failure
- acute portal hypertension
- unreliable HVPG, 3D-MRE or 2D-MRE results due to technical reasons
- with liver interventional therapy between HVPG and MRE
Criteria are shown verbatim from the registry (in English). Final eligibility is always assessed by the study center.
Healthy volunteers: No
Study design
- Observational model
- Cohort
Study locations
China · 1 center
- Shengjing Hospital of China Medical University — Shenyang
Publications
- Shi Y, Qi YF, Lan GY, Wu Q, Ma B, Zhang XY, Ji RY, Ma YJ, Hong Y. Three-dimensional MR Elastography Depicts Liver Inflammation, Fibrosis, and Portal Hypertension in Chronic Hepatitis B or C. Radiology. 2021 Oct;301(1):154-162. doi: 10.1148/radiol.2021202804. Epub 2021 Aug 10. PMID 34374594
- Yu Q, Huang Y, Li X, Pavlides M, Liu D, Luo H, Ding H, An W, Liu F, Zuo C, Lu C, Tang T, Wang Y, Huang S, Liu C, Zheng T, Kang N, Liu C, Wang J, Akcalar S, Celebioglu E, Ustuner E, Bilgic S, Fang Q, Fu CC, Zhang R, Wang C, Wei J, Tian J, Ormeci N, Ellik Z, Asiller OO, Ju S, Qi X. An imaging-based artificial intelligence model for non-invasive grading of hepatic venous pressure gradient in cirrhoti PMID 35492878
Identifiers
NCT: NCT06205992 · ShengjingH2206