[1] |
Kohn G, Price R, DeMeester S, et al. Guidelines for the management of hiatal hernia[J]. Surg Endosc, 2013, 27(12): 4409-4428.
|
[2] |
Paul M, DeRosa R, Petrucci P, et al. Laparoscopic tension-free repair of large paraesophageal hernias[J]. Surg Endosc, 1997, 11(3): 303-307.
|
[3] |
Cuschieri A, Shimi S, Nathanson L. Laparoscopic reduction, crural repair, and fundoplication of large hiatal hernia[J]. Am J Surg, 1992, 163(4): 425-430.
|
[4] |
Zaninotto G, Portale G, Costantini M, et al. Objective follow-up after laparoscopic repair of large type III hiatal hernia. Assessment of safety and durability[J]. World J Surg, 2007, 31(11): 2177-2183.
|
[5] |
Watson DI. Evolution and development of surgery for large paraesophageal hiatus hernia[J]. World J Surg, 2011, 35(7): 1436-1441.
|
[6] |
Edye M, Salky B, Posner A, et al. Sac excision is essential to adequate laparoscopic repair of paraesophageal hernia[J]. Surg Endosc, 1998, 12(10): 1259-1263.
|
[7] |
Wijnhoven B, Watson DI. Laparoscopic repair of a giant hiatus hernia-how I do it[J]. J Gastrointest Surg, 2008, 12(8): 1459-1464.
|
[8] |
Klosterhalfen B, Junge K, Klinge U. The lightweight and large porous mesh concept for hernia repair[J]. Expert Rev Med Devices, 2005, 2(1): 103-117.
|
[9] |
Li J, Cheng T. Mesh erosion after hiatal hernia repair: the tip of the iceberg?[J]. 2019, 23(6): 1243-1252.
|
[10] |
Smith G, Hazebroek E, Eckstein R, et al. Evaluation of DualMesh for repair of large hiatus hernia in a porcine model. 2008, 22(7): 1625-1631.
|
[11] |
Antonino A, Giorgio R, Giuseppe F, et al. Hiatal hernia repair with gore bio-a tissue reinforcement: our experience[J]. Hernia, 2014, 2014: 851278.
|
[12] |
Smart N, Daniels I, Marquez SJ. Supplemental cross-linking in tissue-based surgical implants for abdominal wall repair[J]. Case Rep Surg, 2012, 10(9): 436-442.
|
[13] |
Franklin M, Treviño J, Portillo G, et al. The use of porcine small intestinal submucosa as a prosthetic material for laparoscopic hernia repair in infected and potentially contaminated fields: long-term follow-up[J]. Surg Endosc, 2008, 22(9): 1941-1946.
|
[14] |
Nie X, Xiao D, Wang W, et al. Comparison of porcine small intestinal submucosa versus polypropylene in open inguinal hernia repair: a systematic review and meta-analysis[J]. PLoS One, 2015, 10(8): e0135073.
|
[15] |
Sandoval J, Lou D, Engum S, et al. The whole truth: comparative analysis of diaphragmatic hernia repair using 4-ply vs 8-ply small intestinal submucosa in a growing animal model[J]. J Pediatr Surg, 2006, 41(3): 518-523.
|
[16] |
Champion J, Rock D. Laparoscopic mesh cruroplasty for large paraesophageal hernias[J]. Surg Endosc, 2003, 17(4): 551-553.
|
[17] |
Huddy J, Markar S, Ni M, et al. Laparoscopic repair of hiatus hernia: Does mesh type influence outcome? A meta-analysis and European survey study[J]. Surg Endosc, 2016, 30(12): 5209-5221.
|
[18] |
Granderath F, Schweiger U, Pointner R. Laparoscopic antireflux surgery: tailoring the hiatal closure to the size of hiatal surface area[J]. Surg Endosc, 2007, 21(4): 542-548.
|
[19] |
Grubnik V, Malynovskyy A. Laparoscopic repair of hiatal hernias: new classification supported by long-term results[J]. Surg Endosc, 2013, 27(11): 4337-4346.
|
[20] |
Aiolfi A, Cavalli M, Saino G, et al. Laparoscopic posterior cruroplasty: a patient tailored approach[J]. Hernia, 2020, doi: 10.1007/s10029-020-02188-5.
|
[21] |
Wang Z, Bright T, Irvine T, et al. Outcome for asymptomatic recurrence following laparoscopic repair of very large hiatus hernia[J]. J Gastrointest Surg, 2015, 19(8): 1385-1390.
|
[22] |
Carlson M, Richards C, Frantzides CJ. Laparoscopic prosthetic reinforcement of hiatal herniorrhaphy[J]. Dig Surg, 1999, 16(5): 407-410.
|
[23] |
Carlson M, Condon R, Ludwig K, et al. Management of intrathoracic stomach with polypropylene mesh prosthesis reinforced transabdominal hiatus hernia repair. J Am Coll Surg, 1998, 187(3): 227-230.
|
[24] |
Zhang C, Liu D, Li F, et al. Systematic review and meta-analysis of laparoscopic mesh versus suture repair of hiatus hernia: objective and subjective outcomes[J]. Surg Endosc, 2017, 31(12): 4913-4922.
|
[25] |
Furnée E, Hazebroek EJ. Mesh in laparoscopic large hiatal hernia repair: a systematic review of the literature[J]. Surg Endosc, 2013, 27(11): 3998-4008.
|
[26] |
Oelschlager B, Pellegrini C, Hunter J, et al: Biologic prosthesis reduces recurrence after laparoscopic paraesophageal hernia repair: a multicenter, prospective, randomized trial[J]. Ann Surg, 2006, 244(4): 481-490.
|
[27] |
Gordon A, Gillespie C, Son J, et al. Long-term outcomes of laparoscopic large hiatus hernia repair with nonabsorbable mesh[J]. Dis Esophagus, 2018, 31(5): doi: 10.1093/dote/dox156.
|
[28] |
Oelschlager B, Pellegrini C, Hunter J, et al. Biologic prosthesis to prevent recurrence after laparoscopic paraesophageal hernia repair: long-term follow-up from a multicenter, prospective, randomized trial[J]. J Am Coll Surg, 2011, 213(4): 461-468.
|
[29] |
Watson D, Thompson S, Devitt P, et al. Five year follow-up of a randomized controlled trial of laparoscopic repair of very large hiatus hernia with sutures versus absorbable versus nonabsorbable mesh[J]. Ann Surg, 2020, 272(2): 241-247.
|
[30] |
Watson D, Thompson S, Devitt P, et al. Laparoscopic repair of very large hiatus hernia with sutures versus absorbable mesh versus nonabsorbable mesh: a randomized controlled trial[J]. Ann Surg, 2015, 261(2): 282-289.
|
[31] |
Memon M, Memon B, Yunus R, et al. Suture cruroplasty versus prosthetic hiatal herniorrhaphy for large hiatal hernia: a meta-analysis and systematic review of randomized controlled trials[J]. Ann Surg, 2016, 263(2): 258-266.
|
[32] |
Spiro C, Quarmby N, Gananadha S. Mesh-related complications in paraoesophageal repair: a systematic review. Surg Endosc, 2020, 34(10): 4257-4280.
|
[33] |
Antonakis F, Köckerling F, Kallinowski F. Functional results after repair of large hiatal hernia by use of a biologic mesh[J]. Front Surg, 2016, 3: 16.
|
[34] |
Zügel N, Lang R, Kox M, Hüttl T. Severe complication of laparoscopic mesh hiatoplasty for paraesophageal hernia[J]. Surg Endosc, 2009, 23(11): 2563-2567.
|
[35] |
Keville S, Rabach L, Saad A, et al. Evolution from the U-shaped to keyhole-shaped mesh configuration in the repair of paraesophageal and recurrent hiatal hernia[J]. Surg Laparosc Endosc Percutan Tech, 2020, 30(4): 339-344.
|
[36] |
Abu Saleh W, Morris L, Tariq N, et al. Routine use of mesh during hiatal closure is safe with no increase in adverse sequelae[J]. Surg Endosc, 2018, 32(2): 879-888.
|
[37] |
Makarewicz W, Jaworski Ł, Bobowicz M, et al. Paraesophageal hernia repair followed by cardiac tamponade caused by ProTacks[J]. Ann Thorac Surg, 2012, 94(4): e87-89.
|
[38] |
Powell B, Wandrey D, Voeller GJ. A technique for placement of a bioabsorbable prosthesis with fibrin glue fixation for reinforcement of the crural closure during hiatal hernia repair[J]. Hernia, 2013, 17(1): 81-84.
|
[39] |
Crespin O, Yates R, Martin A, et al. The use of crural relaxing incisions with biologic mesh reinforcement during laparoscopic repair of complex hiatal hernias[J]. Surg Endosc, 2016, 30(6): 2179-2185.
|
[40] |
Navaratne L, Ashrafian H, Martínez-Isla A. Quantifying tension in tension-free hiatal hernia repair: a new intra-operative technique[J]. Surg Endosc, 2019, 33(9): 3040-3049.
|
[41] |
Braghetto I, Korn O, Rojas J, et al. Hiatal hernia repair: prevention of mesh erosion and migration into the esophagogastric junction[J]. Arq Bras Cir Dig, 2020, 33(1): e1489.
|
[42] |
Varga G, Cseke L, Kalmár K, et al. Prevention of recurrence by reinforcement of hiatal closure using ligamentum teres in laparoscopic repair of large hiatal hernias[J]. Surg Endosc, 2004, 18(7): 1051-1053.
|
[43] |
Furnée E, Smith C, Hazebroek EJ. The use of mesh in laparoscopic large hiatal hernia repair: a survey of european surgeons[J]. Surg Laparosc Endosc Percutan Tech, 2015, 25(4): 307-311.
|