[1] Guixé-Muntet S, Quesada-Vázquez S, Gracia-Sancho J. Pathophysiology and therapeutic options for cirrhotic portal hypertension. Lancet Gastroenterol Hepatol, 2024, 9(7):646-663. [2] Wang QC, Jiao J, Zhang CQ. Application of artificial intelligence in portal hypertension and esophagogastric varices. World J Gastroenterol, 2025, 31(24):108508. [3] Rapelly SS, Singh S, Verma N, et al. Non-invasive predictors to grade esophageal varices in liver cirrhosis patients. J Family Med Prim Care, 2024, 13(4):1232-1237. [4] Bai Z, Wang R, Cheng G, et al. Outcomes of early versus delayed endoscopy in cirrhotic patients with acute variceal bleeding: a systematic review with meta-analysis. Eur J Gastroenterol Hepatol, 2021, 33(1S Suppl 1):e868-e876. [5] Collins HJ, Chitturi S, Sharma S,et al. Assessing the accuracy of contrast-enhanced CT abdomen in identifying and stratifying risk of oesophageal varices in cirrhotic patients:A retrospective study. Cureus, 2025, 17(10):e94163. [6] 中华医学会肝病学分会,中华医学会消化病学分会,中华医学会内镜学分会,等.肝硬化门静脉高压食管胃静脉曲张出血的防治指南.实用肝脏病杂志,2016,19(5):641-656. [7] 刘玉华,张源,郭家婷. 肝脏超声血流参数联合肝脾硬度检测预测乙型肝炎肝硬化并发EV破裂出血价值研究. 实用肝脏病杂志,2025,28(3):414-417. [8] Torres Rojas AM, Lorente S. Liver fibrosis emulation: Impact of the vascular fibrotic alterations on hemodynamics. Comput Biol Med, 2023, 166:107563. [9] Kotani K, Kawada N. Recent advances in the pathogenesis and clinical evaluation of portal hypertension in chronic liver disease. Gut Liver, 2024, 18(1):27-39. [10] Wu ZP, Wang YF, Shi FW, et al. Predictive models and clinical manifestations of intrapulmonary vascular dilatation and hepatopulmonary syndrome in patients with cirrhosis: Prospective comparative study. World J Gastroenterol, 2025, 31(15):105720. [11] Sartoretti T, Mergen V, Jungblut L, et al. Liver iodine quantification with photon-counting detector CT: Accuracy in an abdominal phantom and feasibility in patients. Acad Radiol, 2023, 30(3):461-469. [12] Wang L, Zhang Y, Wu YF, et al. Computed tomography perfusion in liver and spleen for hepatitis B virus-related portal hypertension: A correlation study with hepatic venous pressure gradient. World J Gastroenterol, 2022, 28(42):6068-6077. [13] Kalista KF, Hanif SA, Nababan SH, et al. The clinical role of endoscopic ultrasound for management of bleeding esophageal varices in liver cirrhosis. Case Rep Gastroenterol, 2022, 16(2):295-300. [14] Li Q, Guo X, Feng J, et al. Risk factors for esophageal collateral veins in cirrhosis with and without previous endoscopic esophageal variceal therapy. Can J Gastroenterol Hepatol, 2022, 2022:6666791. [15] Glückert K, Decker A, Meier JA, et al. 3D-volumetric shunt measurement for detection of high-risk esophageal varices in liver cirrhosis. J Clin Med, 2024, 13(9):2678. [16] Shigefuku R, Takahashi H, Watanabe T, et al. Effects of endoscopic injection sclerotherapy for esophagogastric varices on portal hemodynamics and liver function. BMC Gastroenterol, 2022, 22(1):350. [17] Yokoyama K, Miyayama T, Uchida Y, et al. Novel endoscopic therapy for gastric varices using direct forward-viewing endoscopic ultrasonography. Case Rep Gastroenterol, 2021, 15(1):28-34. [18] Han J, Dong J, Yan C, et al.Development of a clinical-CT-radiomics nomogram for predicting endoscopic red color sign in cirrhotic patients with esophageal varices. Abdom Radiol (NY), 2025 [ahead of print]. [19] Xu L, Zhang J, Liu S, et al. Development and internal validation of prediction model for rebleeding within one year after endoscopic treatment of cirrhotic varices: consideration from organ-based CT radiomics signature. BMC Med Imaging, 2024, 24(1):292. [20] Edelson JC, Rockey DC. Safety of endoscopy in cirrhosis. Dig Dis Sci, 2024, 69(9):3206-3213. |