A lightweight, partially absorbable mesh (Ultrapro) for endoscopic hernia repair: experimental biocompatibility results obtained with a porcine model
Author:
Publisher
Springer Science and Business Media LLC
Subject
Surgery
Link
http://link.springer.com/content/pdf/10.1007/s00464-007-9585-1.pdf
Reference20 articles.
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2. Greca FH, de Paula JB, Biondo-Simmoes ML, da Costa FD, da Silva AP, Times S, Mansur A (2001) The influence of differing pore sizes on biocompatibility of two polypropylene meshes in the repair of abdominal defects: experimental study in dogs. Hernia 5:59–64
3. Junge K, Rosch R, Bialasinski L, Klinge U, Klosterhalfen B, Schumpelick V (2003) Persistent extracellular matrix remodelling at the interface to polymers used for hernia repair. Eur Surg Res 35:497–504
4. Junge K, Rosch R, Krones CJ, Klinge U, Mertens PR, Lynen P, Schumpelick V, Klosterhalfen B (2005) Influence of polyglecaprone 25 (Monocryl) supplementation on biocompatibility of a polypropylene mesh for hernia repair. Hernia 9:212–217
5. Klinge U, Klosterhalfen B, Birkenhauer V, Junge K, Conze J, Schumpelick V (2002) Impact of polymer pore size on interface scar formation in a rat model. J Surg Res 103:208–214
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