Page 138 - International guidelines for groin hernia management
P. 138

Hernia

               Lichtenstein method for inguinal hernia repair. ANZ J Surg  influencing the incidence of chronic groin pain following
               76:548–552. https://doi.org/10.1111/j.1445-2197.2006.03774.x  laparoscopic inguinal hernia repair. Am J Surg 205:726–736.
           402. Paajanen H (2007) A single-surgeon randomized trial comparing  https://doi.org/10.1016/j.amjsurg.2012.07.046
               three composite meshes on chronic pain after Lichtenstein her-  416. Currie A, Andrew H, Tonsi A, Hurley PR, Taribagil S (2012)
               nia repair in local anesthesia. Hernia 11:335–339. https://doi.  Lightweight versus heavyweight mesh in laparoscopic inguinal
               org/10.1007/s10029-007-0236-1                      hernia repair: a meta-analysis. Surg Endosc 26:2126–2133.
           403. Moreno-Egea A, Carrillo-Alcaraz A, Soria-Aledo V (2013)  https://doi.org/10.1007/s00464-012-2179-6
               Randomized clinical trial of laparoscopic hernia repair com-  417. Li J, Ji Z, Cheng T (2012) Lightweight versus heavyweight in
               paring titanium-coated lightweight mesh and medium-weight  inguinal hernia repair: a meta-analysis. Hernia 16:529–539.
               composite mesh. Surg Endosc Other Interv Tech 27:231–239.  https://doi.org/10.1007/s10029-012-0928-z
               https://doi.org/10.1007/s00464-012-2425-y      418. Pielacinski K, Szczepanik AB, Wroblewski T (2013) Effect of
           404. Bury KSM (2012) Five-year results of a randomized clinical  mesh type, surgeon and selected patients’ characteristics on the
               trial comparing a polypropylene mesh with a poliglecaprone and  treatment of inguinal hernia with the Lichtenstein technique.
               polypropylene composite mesh for inguinal hernioplasty. Hernia  Randomized trial. Wideochir Inne Tech Maloinwazyjne
               16:549–553. https://doi.org/10.1007/s10029-012-0916-3  8:99–106. https://doi.org/10.5114/wiitm.2011.32824
                                                                                   ´
                                                                  ´
           405. Peeters E, Spiessens C, Oyen R et al (2010) Laparoscopic  419. Smietan ´ski M, Bury K, Smietan ´ska IA, Owczuk R, Paradowski
               inguinal hernia repair in men with lightweight meshes may  T (2011) Five-year results of a randomised controlled multi-
               significantly impair sperm motility: a randomized controlled  centre study comparing heavy-weight knitted versus low-weight,
               trial. Ann Surg 252:240–246. https://doi.org/10.1097/SLA.  non-woven polypropylene implants in Lichtenstein hernioplasty.
               0b013e3181e8fac5                                   Hernia  15(5):495–501.  https://doi.org/10.1007/s10029-011-
           406. Langenbach MR, Schmidt J, Zirngibl H (2006) Comparison of  0808-y
               biomaterials: three meshes and TAPP for inguinal hernia. Surg  420. Sajid M, Leaver C, Baig M et al (2012) Systematic review and
               Endosc 20(10):1511–1517. https://doi.org/10.1007/s00464-005-  meta-analysis of the use of lightweight versus heavyweight
               0078-9                                             mesh in open inguinal hernia repair. Br J Surg 99:29–37
           407. Bringman S, Wollert S, Osterberg J et al (2005) One year results  421. Uzzaman MM, Ratnasingham K, Ashraf N (2012) Meta-analysis
               of a randomised controlled multi-centre study comparing Pro-  of randomized controlled trials comparing lightweight and
               lene and Vypro II-mesh in Lichtenstein hernioplasty. Hernia  heavyweight mesh for Lichtenstein inguinal hernia repair. Her-
               9:223–227. https://doi.org/10.1007/s10029-005-0324-z  nia 16(5):505–518. https://doi.org/10.1007/s10029-012-0901-x
           408. Heikkinen T, Wollert S, Osterberg J, Smedberg S, Bringman S  422. Bittner R, Leibl BJ, Kraft B, Schwarz J (2011) One-year results
               (2006) Early results of a randomised trial comparing Prolene  of a prospective, randomised clinical trial comparing four
               and Vypro II-mesh in endoscopic extraperitoneal inguinal hernia  meshes in laparoscopic inguinal hernia repair (TAPP). Hernia
               repair (TEP) of recurrent unilateral hernias. Hernia 10:34–40.  15:503–510. https://doi.org/10.1007/s10029-011-0810-4
               https://doi.org/10.1007/s10029-005-0026-6      423. Schopf S, von Ahnen T, von Ahnen M, Schardey H (2011)
           409. Lionetti R, Neola B, Dilillo S, Bruzzese D, Ferulano GP (2012)  Chronic pain after laparoscopic transabdominal preperitoneal
               Sutureless hernioplasty with light-weight mesh and Wbrin glue  hernia repair: a randomized comparison of light and extralight
               versus Lichtenstein procedure: a comparison of outcomes  titanized polypropylene mesh. World J Surg 35:302–310.
               focusing on chronic postoperative pain. Hernia 16:127–131.  https://doi.org/10.1007/s00268-010-0850-4
               https://doi.org/10.1007/s10029-011-0869-y      424. Bittner R, Schmedt CG, Leibl BJ, Schwarz J (2011) Early
           410. Nikkolo C, Lepner U, Murruste M, Vaasna T, Seepter H, Tikk T  postoperative and one year results of a randomized controlled
               (2010) Randomised clinical trial comparing lightweight mesh  trial comparing the impact of extralight titanized polypropylene
               with heavyweight mesh for inguinal hernioplasty. Hernia  mesh and traditional heavyweight polypropylene mesh on pain
               14:253–258. https://doi.org/10.1007/s10029-010-0630-y  and seroma production in laparoscopic hernia repair (TAPP).
           411. Peeters E, Spiessens C, Oyen R et al (2014) Sperm motility after  World J Surg 35:1791–1797
               laparoscopic inguinal hernia repair with lightweight meshes:  425. Burgmans JPJ, Voorbrood CEH, Schouten N et al (2015) Three-
               3-year follow-up of a randomised clinical trial. Hernia  month results of the effect of Ultrapro or Prolene mesh on post-
               18:361–367. https://doi.org/10.1007/s10029-012-1028-9  operative pain and well-being following endoscopic totally
           412. Nikkolo C, Vaasna T, Murruste M, Seepter H, Kirsima ¨gi U,  extraperitoneal hernia repair (TULP trial). Surg Endosc Other
               Lepner U (2014) Randomized clinical study evaluating the  Interv Tech 29(11):3171–3178. https://doi.org/10.1007/s00464-
               impact of mesh pore size on chronic pain after Lichtenstein  014-4049-x
               hernioplasty. J Surg Res 191(2):311–317. https://doi.org/10.  426. Horstmann R, Hellwig M, Classen C, Rottgermann S, Palmes D
               1016/j.jss.2014.04.022                             (2006) Impact of polypropylene amount on functional outcome
           413. Lake SP, Ray S, Zihni AM, Thompson DM, Gluckstein J,  and quality of life after inguinal hernia repair by the TAPP
               Deeken CR (2015) Pore size and pore shape—but not mesh  procedure using pure, mixed, and titanium-coated meshes.
               density—alter the mechanical strength of tissue ingrowth and  World J Surg 30:1742–1749. https://doi.org/10.1007/s00268-
               host tissue response to synthetic mesh materials in a porcine  005-0242-3
               model of ventral hernia repair. J Mech Behav Biomed Mater  427. Champault G, Bernard C, Rizk N, Polliand C (2007) Inguinal
               42:186–197. https://doi.org/10.1016/j.jmbbm.2014.11.011  hernia repair: the choice of prosthesis outweighs that of tech-
           414. Schug-Pass C, Tamme C, Tannapfel A, Kockerling F (2006) A  nique. Hernia 11(2):125–128
               lightweight polypropylene mesh (TiMesh) for laparoscopic  428. Costello CR, Bachman SL, Ramshaw BJ, Grant SA (2007)
               intraperitoneal repair of abdominal wall hernias: comparison of  Materials characterization of explanted polypropylene hernia
               biocompatibility with the DualMesh in an experimental study  meshes. J Biomed Mater Res Part B Appl Biomater
               using the porcine model. Surg Endosc Other Interv Tech  83(1):44–49. https://doi.org/10.1002/jbm.b.30764
               20(3):402–409. https://doi.org/10.1007/s00464-004-8277-3  429. Hansen NL, Ciritsis A, Otto J, Busch D, Kuhl CK, Kraemer NA
           415. Sajid MS, Kalra L, Parampalli U, Sains PS, Baig MK (2013) A  (2015) Utility of magnetic resonance imaging to monitor sur-
               systematic review and meta-analysis evaluating the effective-  gical meshes correlating imaging and clinical outcome of
               ness of lightweight mesh against heavyweight mesh in


           123
   133   134   135   136   137   138   139   140   141   142   143