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Evaluation of Liver and Spleen Stiffness with Acoustic Radiation Force Impulse Quantification Elastography for Diagnosing Clinically Significant Portal Hypertension.

作者信息

Attia D, Schoenemeier B, Rodt T, Negm A A, Lenzen H, Lankisch T O, Manns M, Gebel M, Potthoff A

机构信息

Zentrum f. Innere Medizin, Hannover Medical School, Hannover, Germany.

Hannover Medical School, Diagnostic and Interventional Radiology, Hannover, Germany.

出版信息

Ultraschall Med. 2015 Dec;36(6):603-10. doi: 10.1055/s-0041-107971. Epub 2015 Nov 13.


DOI:10.1055/s-0041-107971
PMID:26565516
Abstract

PURPOSE: Hepatic vein pressure gradient (HVPG) is the gold standard for diagnosing clinically significant portal hypertension (CSPH). The aim of this study was to investigate-in comparison to HVPG-the ability to diagnose CSPH by liver and spleen stiffness measurements obtained by acoustic radiation force impulse (ARFI) imaging. MATERIALS AND METHODS: A total of 78 patients (mean age: 53 ± 13 years, 62 % male) with chronic liver disease were enrolled in this study. Each patient received liver (LSM) and spleen (SSM) stiffness measurements by ARFI, an HVPG measurement and a transjugular liver biopsy on the same day. Patients were classified according to their HVPG into three different groups: HVPG < 10 mmHg, HVPG ≥ 10-< 12 mmHg and HVPG ≥ 12 mmHg. RESULTS: LSM, SSM were significantly higher in patients with HVPG ≥ 10 - < 12 in comparison to HVPG < 10 mmHg (p < 0.001 and p < 0.001, respectively), and in patients with HVPG ≥ 12 mmHg in comparison to ≥ 10 - < 12 mmHg (p < 0.001 and p < 0.001, respectively). LSM and SSM were able to diagnose HVPG ≥ 10 mmHg and HVPG ≥ 12 mmHg with high diagnostic performance (AUC LSM: 0.93 and 0.87, respectively; AUC SSM: 0.97 and 0.95, respectively). The AUC of SSM in predicting esophageal varices (EVs) plus HVPG ≥ 10 mmHg and EVs plus HVPG ≥ 12 mmHg were higher compared to LSM in both groups of patients (SSM: 0.90 and 0.93 vs. LSM: 0.84 and 0.88, respectively). No significant difference between both AUCs was detected in the different HVPG groups. In the multivariate -analysis SSM remained a factor predicting HVPG (HVPG > 10 mmHg p = 0.007; HVPG ≥ 12 mmHg p = 0.003). CONCLUSION: LSM and SSM by ARFI are noninvasive diagnostic tools that may help in diagnosing CSPH. LSM and SSM could be used as a guiding noninvasive screening tool in patients with esophageal varices requiring endoscopic evaluation.

摘要

相似文献

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Evaluation of Liver and Spleen Stiffness with Acoustic Radiation Force Impulse Quantification Elastography for Diagnosing Clinically Significant Portal Hypertension.

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引用本文的文献

[1]
Non-invasive screening for liver fibrosis by acoustic radiation force impulse in patients with ciliopathies.

Sci Rep. 2025-4-17

[2]
Two-Dimensional and Point Shear-Wave Elastography to Predict Esophageal Varices and Clinically Significant Portal Hypertension in Patients with Chronic Liver Disease.

J Clin Med. 2024-12-18

[3]
KASL clinical practice guidelines for noninvasive tests to assess liver fibrosis in chronic liver disease.

Clin Mol Hepatol. 2024-9

[4]
Non-Invasive Diagnostic Tests for Portal Hypertension in Patients with HBV- and HCV-Related Cirrhosis: A Comprehensive Review.

Medicina (Kaunas). 2024-4-24

[5]
Recent Advances in the Pathogenesis and Clinical Evaluation of Portal Hypertension in Chronic Liver Disease.

Gut Liver. 2024-1-15

[6]
Application of Ultrasound Elastography in Assessing Portal Hypertension.

Diagnostics (Basel). 2022-9-29

[7]
Spleen and Liver Stiffness Evaluation by ARFI Imaging: A Reliable Tool for a Short-Term Monitoring of Portal Hypertension?

Int J Hepatol. 2022-9-9

[8]
Spleen Transient Elastography and Damping Index Identify a Subgroup of Patients Without an Acute or Chronic Response to Beta-Blockers.

Front Med (Lausanne). 2022-6-22

[9]
Accuracy of 2D and point shear wave elastography-based measurements for diagnosis of esophageal varices: a systematic review and meta-analysis.

Diagn Interv Radiol. 2022-3

[10]
Detection of liver and spleen stiffness in rats with portal hypertension by two-dimensional shear wave elastography.

BMC Med Imaging. 2022-4-13

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