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Chapter 15
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21. de Castro Bras LE, Shurey S, Sibbons PD. Evaluation of crosslinked and non-crosslinked biologic prostheses for abdominal hernia repair. Hernia : the journal of hernias and abdominal wall surgery. 2012;16(1):77-89.
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24. Daly KA, Stewart-Akers AM, Hara H, Ezzelarab M, Long C, Cordero K, et al. E ect of the alphaGal epitope on the response to small intestinal submucosa extracellular matrix in a nonhuman primate model. Tissue engineering Part A. 2009;15(12):3877-88.
25. Ansaloni L, Cambrini P, Catena F, Di Saverio S, Gagliardi S, Gazzotti F, et al. Immune response to small intestinal submucosa (surgisis) implant in humans: preliminary observations. Journal of investigative surgery : the o cial journal of the Academy of Surgical Research. 2007;20(4):237-41.
26. Jarman-Smith ML, Bodamyali T, Stevens C, Howell JA, Horrocks M, Chaudhuri JB. Porcine collagen crosslinking, degradation and its capability for broblast adhesion and proliferation. Journal of materials science Materials in medicine. 2004;15(8):925-32.
27. Peeters E, van Barneveld KW, Schreinemacher MH, De Hertogh G, Ozog Y, Bouvy N, et al. One-year outcome of biological and synthetic bioabsorbable meshes for augmentation of large abdominal wall defects in a rabbit model. J Surg Res. 2013;180(2):274-83.
28. Novitsky YW, Orenstein SB, Kreutzer DL. Comparative analysis of histopathologic responses to implanted porcine biologic meshes. Hernia : the journal of hernias and abdominal wall surgery. 2014;18(5):713-21.
29. Rosen MJ, Krpata DM, Ermlich B, Blatnik JA. A 5-year clinical experience with single-staged repairs of infected and contaminated abdominal wall defects utilizing biologic mesh. Annals of surgery. 2013;257(6):991-6.
30. Darehzereshki A, Goldfarb M, Zehetner J, Moazzez A, Lipham JC, Mason RJ, et al. Biologic versus nonbiologic mesh in ventral hernia repair: a systematic review and meta-analysis. World journal of surgery. 2014;38(1):40-50.
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32. Carbonell AM, Criss CN, Cobb WS, Novitsky YW, Rosen MJ. Outcomes of synthetic mesh in contaminated ventral hernia repairs. Journal of the American College of Surgeons. 2013;217(6):991- 8.
33. Diaz-Godoy A, Garcia-Urena MA, Lopez-Monclus J, Vega Ruiz V, Melero Montes D, Erquinigo Agurto N. Searching for the best polypropylene mesh to be used in bowel contamination. Hernia : the journal of hernias and abdominal wall surgery. 2011;15(2):173-9.
34. Souza JM, Dumanian GA. Routine use of bioprosthetic mesh is not necessary: a retrospective review of 100 consecutive cases of intra-abdominal midweight polypropylene mesh for ventral hernia repair. Surgery. 2013;153(3):393-9.
35. Fischer JP, Basta MN, Mirzabeigi MN, Kovach SJ, 3rd. A comparison of outcomes and cost in VHWG grade II hernias between Rives-Stoppa synthetic mesh hernia repair versus underlay biologic mesh repair. Hernia : the journal of hernias and abdominal wall surgery. 2014;18(6):781-9.
36. Basta MN, Fischer JP, Kovach SJ. Assessing complications and cost-utilization in ventral hernia repair utilizing biologic mesh in a bridged underlay technique. American journal of surgery. 2015;209(4):695-702.
37. Perez-Kohler B, Sotomayor S, Rodriguez M, Gegundez MI, Pascual G, Bellon JM. Bacterial adhesion to biological versus polymer prosthetic materials used in abdominal wall defect repair: do these meshes show any di erences in vitro? Hernia : the journal of hernias and abdominal wall surgery. 2015.
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