Page 17 - Read Online
P. 17
Sawa et al. Mini-invasive Surg 2024;8:30 https://dx.doi.org/10.20517/2574-1225.2024.43 Page 11 of 11
14. Kawaguchi Y, Nomi T, Fuks D, Mal F, Kokudo N, Gayet B. Hemorrhage control for laparoscopic hepatectomy: technical details and
predictive factors for intraoperative blood loss. Surg Endosc 2016;30:2543-51. DOI PubMed
15. Dindo D, Demartines N, Clavien PA. Classification of surgical complications: a new proposal with evaluation in a cohort of 6336
patients and results of a survey. Ann Surg 2004;240:205-13. DOI PubMed PMC
16. Berardi G, Van Cleven S, Fretland ÅA, et al. Evolution of laparoscopic liver surgery from innovation to implementation to mastery:
perioperative and oncologic outcomes of 2,238 patients from 4 European Specialized Centers. J Am Coll Surg 2017;225:639-49. DOI
PubMed
17. Ban D, Tanabe M, Ito H, et al. A novel difficulty scoring system for laparoscopic liver resection. J Hepatobiliary Pancreat Sci
2014;21:745-53. DOI PubMed
18. Halls MC, Berardi G, Cipriani F, et al. Development and validation of a difficulty score to predict intraoperative complications during
laparoscopic liver resection. Br J Surg 2018;105:1182-91. DOI PubMed
19. Hasegawa Y, Wakabayashi G, Nitta H, et al. A novel model for prediction of pure laparoscopic liver resection surgical difficulty. Surg
Endosc 2017;31:5356-63. DOI PubMed
20. Wakabayashi G. What has changed after the Morioka consensus conference 2014 on laparoscopic liver resection? Hepatobiliary Surg
Nutr 2016;5:281-9. DOI PubMed PMC
21. Sucandy I, Kang RD, Adorno J, et al. Validity of the Institut Mutualiste Montsouris classification system for robotic liver resection.
HPB 2023;25:1022-9. DOI PubMed
22. Russolillo N, Maina C, Fleres F, Langella S, Lo Tesoriere R, Ferrero A. Comparison and validation of three difficulty scoring systems
in laparoscopic liver surgery: a retrospective analysis on 300 cases. Surg Endosc 2020;34:5484-94. DOI PubMed
23. Goh BKP, Prieto M, Syn N, et al. Validation and comparison of the Iwate, IMM, Southampton and Hasegawa difficulty scoring
systems for primary laparoscopic hepatectomies. HPB 2021;23:770-6. DOI PubMed
24. Russolillo N, Aldrighetti L, Cillo U, et al; I Go MILS Group. Risk-adjusted benchmarks in laparoscopic liver surgery in a national
cohort. Br J Surg 2020;107:845-53. DOI PubMed
25. Dubray Q, Laroche S, Tribillon E, et al. Analysis of economic impact of laparoscopic liver resection according to surgical difficulty.
Surg Endosc 2021;35:1006-13. DOI PubMed
26. Watanabe G, Kawaguchi Y, Ichida A, et al. Understanding conditional cumulative incidence of complications following liver resection
to optimize hospital stay. HPB 2022;24:226-33. DOI PubMed
27. Kobayashi K, Kawaguchi Y, Schneider M, et al. Probability of postoperative complication after liver resection: stratification of patient
factors,operative complexity, and use of enhanced recovery after surgery. J Am Coll Surg 2021;233:357-68.e2. DOI PubMed
28. Hobeika C, Nault JC, Barbier L, et al. Influence of surgical approach and quality of resection on the probability of cure for early-stage
HCC occurring in cirrhosis. JHEP Rep 2020;2:100153. DOI PubMed PMC
29. Mazzotta AD, Kawaguchi Y, Ito K, et al. Graduated autonomy of laparoscopic liver resection based on liver resection complexity: a
western and eastern bi-institution study for learning curve. J Am Coll Surg 2024. DOI PubMed