Page 228 - Prevention and Treatment of Incisional Hernia- New Techniques and Materials
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Chapter 10
23. Coleman R. Picosirius red staining revisited. Acta Histochemica. 2009;111:393-470.
24. Baptista ML, Bonsack ME, Felemovicius I, Delaney JP. Abdominal adhesions to prosthetic mesh evaluated by laparoscopy and electron microscopy. J Am Coll Surg. 2000;190(3):271-80.
25. Binnebosel M, Klinge U, Rosch R, Junge K, Lynen-Jansen P, Schumpelick V. Morphology, quality, and composition in mature human peritoneal adhesions. Langenbecks Arch Surg. 2008;393(1):59-66.
26. Epstein JC, Wilson MS, Wilkosz S, Ireland G, O’Dwyer ST, Herrick SE. Human peritoneal adhesions show evidence of tissue remodeling and markers of angiogenesis. Dis Colon Rectum. 2006;49(12):1885-92.
27. Roy S, Clark CJ, Mohebali K, Bhatt U, Wallace WA, Nahman NS, et al. Reactive oxygen species and EGR- 1 gene expression in surgical postoperative peritoneal adhesions. World J Surg. 2004;28(3):316-20.
28. Schreinemacher MH, Emans PJ, Gijbels MJ, Greve JW, Beets GL, Bouvy ND. Degradation of mesh coatings and intraperitoneal adhesion formation in an experimental model. Br J Surg. 2009;96(3):305-13.
29. Chelala E, Debardemaeker Y, Elias B, Charara F, Dessily M, Alle JL. Eighty- ve redo surgeries after 733 laparoscopic treatments for ventral and incisional hernia: adhesion and recurrence analysis. Hernia. 2010;14(2):123-9.
30. Zinther NB, Wara P, Friis-Andersen H. Intraperitoneal onlay mesh: an experimental study of adhesion formation in a sheep model. Hernia. 2010;14(3):283-9.
31. Petter-Puchner AH, Fortelny RH, Silic K, Brand J, Gruber-Blum S, Redl H. Biologic hernia implants in experimental intraperitoneal onlay mesh plasty repair: the impact of proprietary collagen processing methods and  brin sealant application on tissue integration. Surg Endosc. 2011;25(10):3245-52.
32. Poulose BK, Scholz S, Moore DE, Schmidt CR, Grogan EL, Lao OB, et al. Physiologic properties of small intestine submucosa. J Surg Res. 2005;123(2):262-7.
33. Clarke KM, Lantz GC, Salisbury SK, Badylak SF, Hiles MC, Voytik SL. Intestine submucosa and polypropylene mesh for abdominal wall repair in dogs. J Surg Res. 1996;60(1):107-14.
34. Connor J, McQuillan D, Sandor M, Wan H, Lombardi J, Bachrach N, et al. Retention of structural and biochemical integrity in a biological mesh supports tissue remodeling in a primate abdominal wall model. Regen Med. 2009;4(2):185-95.
35. Mulier KE, Nguyen AH, Delaney JP, Marquez S. Comparison of Permacol and Strattice for the repair of abdominal wall defects. Hernia. 2011;15(3):315-9.
36. Gaertner WB, Bonsack ME, Delaney JP. Experimental evaluation of four biologic prostheses for ventral hernia repair. J Gastrointest Surg. 2007;11(10):1275-85.
37. Stanwix MG, Nam AJ, Hui-Chou HG, Ferrari JP, Aberman HM, Hawes ML, et al. Abdominal ventral hernia repair with current biological prostheses: an experimental large animal model. Ann Plast Surg. 2011;66(4):403-9.
38. Schug-Pass C, Sommerer F, Tannapfel A, Lippert H, Kockerling F. The use of composite meshes in laparoscopic repair of abdominal wall hernias: are there di erences in biocompatibily?: experimental results obtained in a laparoscopic porcine model. Surg Endosc. 2009;23(3):487-95.
39. Schug-Pass C, Tamme C, Tannapfel A, Kockerling F. A lightweight polypropylene mesh (TiMesh) for laparoscopic intraperitoneal repair of abdominal wall hernias: comparison of biocompatibility with the DualMesh in an experimental study using the porcine model. Surg Endosc. 2006;20(3):402-9.
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