[1] Liu Z, Jiang Y, Yuan H, et al. The trends in incidence of primary liver cancer caused by specific etiologies: Results from the Global Burden of Disease Study 2016 and implications for liver cancer prevention. J Hepatol, 2019, 70:674-683. [2] Shirabe K, Takeishi K, Taketomi A, et al. Improvement of long-term outcomes in hepatitis C virus antibody-positive patients with hepatocellular carcinoma after hepatectomy in the modern era. World J Surg, 2011, 35: 1072-1084. [3] Inoue Y, Imai Y, Kawaguchi N, et al. Management of abdominal drainage after hepatic resection. Dig Surg, 2017, 34:400-410. [4] Yamada N, Amano R, Kimura K, et al. Two-surgeon technique for liver transection using precoagulation by a soft-coagulation system and ultrasonic dissection. Hepatogastroenterology, 2015, 62:389-392. [5] Itoh S, Uchiyama H, Kawanaka H, et al. Characteristic risk factors in cirrhotic patients for posthepatectomy complications: comparison with noncirrhotic patients. Am Surg, 2014, 80: 166-170. [6] Nishie A, Ushijima Y, Tajima T, et al. Quantitative analysis of liver function using superparamagnetic iron oxide- and Gd-EOB-DTPA-enhanced MRI: comparison with technetium-99m galactosyl serum albumin scintigraphy. Eur J Radiol, 2012, 81: 1100-1104. [7] Hayashi H, Beppu T, Okabe H, et al. Functional assessment versus conventional volumetric assessment in the prediction of operative outcomes after major hepatectomy. Surgery, 2015, 157: 20-26. [8] Utsunomiya T, Shimada M, Hanaoka J, et al. Possible utility of MRI using Gd-EOB-DTPA for estimating liver functional reserve. J Gastroenterol, 2012, 47: 470-476. [9] Narita M, Hatano E, Arizono S, et al. Expression of OATP1B3 determines uptake of Gd-EOB-DTPA in hepatocellular carcinoma. J Gastroenterol, 2009, 44: 793-798. |