REFERENCES

1. Elsayes KM, Kielar AZ, Chernyak V, Morshid A, Furlan A, et al. LI-RADS: a conceptual and historical review from its beginning to its recent integration into AASLD clinical practice guidance. J Hepatocell Carcinoma 2019;6:49-69.

2. Sirlin CB. The LI-RADS adventure-a personal statement. Abdom Radiol (NY) 2018;43:1-2.

3. Chernyak V, Santillan CS, Papadatos D, Sirlin CB. LI-RADS® algorithm: CT and MRI. Abdom Radiol (NY) 2018;43:111-26.

4. American College of Radiology. Liver Imaging Reporting and Data System version 2018. Available from: http://www.acr.org/Quality-Safety/Resources/LIRADS. [Last accessed on 12 Aug 2020].

5. Kambadakone AR, Fung A, Gupta RT, Hope TA, Fowler KJ, et al. LI-RADS technical requirements for CT, MRI, and contrast-enhanced ultrasound. Abdom Radiol (NY) 2018;43:56-74.

6. Ichikawa T, Kitamura T, Nakajima H, Sou H, Tsukamoto T, et al. Hypervascular hepatocellular carcinoma: can double arterial phase imaging with multidetector CT improve tumor depiction in the cirrhotic liver? AJR Am J Roentgenol 2002;179:751-8.

7. Choi JY, Lee JM, Sirlin CB. CT and MR imaging diagnosis and staging of hepatocellular carcinoma: part II. Extracellular agents, hepatobiliary agents, and ancillary imaging features. Radiology 2014;273:30-50.

8. Chernyak V, Tang A, Flusberg M, Papadatos D, Bijan B, et al. LI-RADS® ancillary features on CT and MRI. Abdom Radiol (NY) 2018;43:82-100.

9. Matsui O, Kobayashi S, Sanada J, Kouda W, Ryu Y, et al. Hepatocelluar nodules in liver cirrhosis: hemodynamic evaluation (angiography-assisted CT) with special reference to multi-step hepatocarcinogenesis. Abdom Imaging 2011;36:264-72.

10. Muto J, Shirabe K, Sugimachi K, Maehara Y. Review of angiogenesis in hepatocellular carcinoma. Hepatol Res 2015;45:1-9.

11. Fowler KJ, Potretzke TA, Hope TA, Costa EA, Wilson SR. LI-RADS M (LR-M): definite or probable malignancy, not specific for hepatocellular carcinoma. Abdom Radiol (NY) 2018;43:149-57.

12. Pawlik TM, Delman KA, Vauthey JN, Nagorney DM, Ng IO, et al. Tumor size predicts vascular invasion and histologic grade: implications for selection of surgical treatment for hepatocellular carcinoma. Liver Transpl 2005;11:1086-92.

13. Forner A, Vilana R, Ayuso C, Bianchi L, Solé M, et al. Diagnosis of hepatic nodules 20 mm or smaller in cirrhosis: prospective validation of the noninvasive diagnostic criteria for hepatocellular carcinoma. Hepatology 2008;47:97-104.

14. Kelekis NL, Semelka RC, Worawattanakul S, de Lange EE, Ascher SM, et al. Hepatocellular carcinoma in North America: a multiinstitutional study of appearance on T1-weighted, T2-weighted, and serial gadolinium-enhanced gradient-echo images. AJR Am J Roentgenol 1998;170:1005-13.

15. Freeny PC, Baron RL, Teefey SA. Hepatocellular carcinoma: reduced frequency of typical findings with dynamic contrast-enhanced CT in a non-Asian population. Radiology 1992;182:143-8.

16. Kadoya M, Matsui O, Takashima T, Nonomura A. Hepatocellular carcinoma: correlation of MR imaging and histopathologic findings. Radiology 1992;183:819-25.

17. Choi JY, Lee JM, Sirlin CB. CT and MR imaging diagnosis and staging of hepatocellular carcinoma: part I. Development, growth, and spread: key pathologic and imaging aspects. Radiology 2014;272:635-54.

18. Kielar AZ, Chernyak V, Bashir MR, Do RK, Fowler KJ, et al. An update for LI-RADS: Version 2018. Why so soon after version 2017? J Magn Reson Imaging 2019;50:1990-1.

Hepatoma Research
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