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Omyra® Mesh - B. Braun Medical AS

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Omyra ® <strong>Mesh</strong><br />

Prevention means Comfort.<br />

Reducing adhesions, Impairing Bacterial Growth.<br />

Hernia Repair


Omyra ® <strong>Mesh</strong><br />

Prevention means Comfort.<br />

Reducing adhesions, Impairing Bacterial Growth.<br />

2<br />

Omyra ® <strong>Mesh</strong> is the first bacterial resistant anti-adhesive mesh.<br />

Omyra ® <strong>Mesh</strong> brings a new concept for hernia repair. It is made<br />

of light-weight condensed Polytetrafluoroethylene (cPTFE) and<br />

a Star-Macroporous structure improves the adhesion prevention<br />

features of the traditional expanded PTFE and enhances the tissue<br />

integration achieved with Polypropylene meshes.<br />

The CondensTech, transparent monolayer Omyra ® <strong>Mesh</strong> provides<br />

the best handling, specially in laparoscopic procedures.<br />

cPTFE<br />

condensed<br />

Polytetrafluoroethylene<br />

ePTFE<br />

expanded<br />

Polytetrafluoroethylene<br />

CondensTech and Star-Macroporous Structure<br />

Impairment of Bacterial Growth 1,2<br />

The CondensTech enables a uniform strong<br />

monolayer for Zriusscing a bacterial resistant Peratldiup mesh with<br />

low infection risk. 4.384 DVD-R<br />

Reduction 4.588 of Adhesion S-VHS Formation<br />

4.434 1 x DVI-D<br />

4.389 8 kg<br />

3,4<br />

The CondensTech technology consists on<br />

micro-machined condensed PTFE that creates<br />

high performance films with the best nonadhesive<br />

properties.<br />

Avoidance of Seroma<br />

The Star-Porous structures allows seroma<br />

drainage and reduces chronic inflammation<br />

and pain providing the maximum comfort<br />

for the patient.<br />

Highly Biocompatible 3,4,5<br />

Low surface area mesh to introduce less foreign<br />

material and have less inflammatory reaction<br />

with optimal tissue integration.<br />

Optimal handling features<br />

• Transparency<br />

• Strength to reinforce the abdominal wall<br />

• Easy to spread<br />

• Monolayer to avoid different parietal and<br />

visceral sides<br />

• Smooth and thin easy passage through the<br />

trocar<br />

• Easy to fix with conventional methods


3<br />

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Best Tissue Integration<br />

Reduction of Adhesion Formation<br />

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Omyra ®<br />

<strong>Mesh</strong>-cPTFE<br />

Tissue Integration<br />

Adhesion Formation<br />

ePTFE<br />

Double Layer<br />

Coated PP PP-ePTFE<br />

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Optimal Anti-Adhesive Properties 3<br />

Compared to the main competitors, the CondensTech<br />

structure allows better tissue integration with the<br />

parietal tissue and reduced adhesions with the<br />

viscera.<br />

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Best Tissue Integration<br />

with Excellent Biocompatibility 6<br />

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3


Product Range<br />

B. <strong>Braun</strong> Code<br />

1061522<br />

1062636<br />

1062030<br />

1061115<br />

1061414<br />

1061515<br />

1061015<br />

1060611<br />

1060715<br />

Main Product Features<br />

Characteristic<br />

Composition<br />

Structure<br />

Density<br />

Thickness<br />

Pore size<br />

Tensile strength<br />

Suture/Tacker retention (Fmax N)<br />

Sterilisation<br />

Indications<br />

Dimension<br />

15 x 22 cm<br />

26 x 36 cm<br />

20 x 30 cm<br />

11 x 15 cm<br />

14 x 14 cm<br />

15 x 15 cm<br />

10 x 15 cm<br />

6 x 11 cm<br />

7.5 x 15 cm<br />

Box Units<br />

1<br />

1<br />

1<br />

1<br />

1<br />

1<br />

1<br />

1<br />

1<br />

Shape Porous Shape<br />

cPTFE<br />

Micromachined condensed Polytetrafluoroethylene<br />

Monolayer<br />

0.9 g/cm3 0.15 mm<br />

2.4 mm (Star shape)<br />

29 N (transversal) x 33.5 N (longitudinal)<br />

27.7 N<br />

Ethylene Oxide<br />

Incisional Hernia and Inguinal Hernia<br />

Omyra ® <strong>Mesh</strong><br />

4


5<br />

Butterfly Necropsy<br />

Omyra ® <strong>Mesh</strong><br />

Prevention means Comfort.<br />

Reducing adhesions, Impairing Bacterial Growth.<br />

Impairment of Bacterial Growth 1<br />

ePTFE Double Layer<br />

ePTFE - PP Coated Polyester Omyra ® <strong>Mesh</strong><br />

Composite GFP channel Composite GFP channel Composite GFP channel Composite GFP channel<br />

The superior CondensTech proved itself in having<br />

impaired bacterial colonisation with Staphylococcus<br />

Epidermidis and Staphylococcus Aureus (SA).<br />

The Green Fluorescent Protein (GFP) imaging for SA<br />

revealed that both necropsy of the tissue with embedded<br />

mesh (Necropsy) and when the tissue and the mesh were<br />

separated (Butterfly), Omyra ® <strong>Mesh</strong> was the only mesh<br />

limiting bacterial ingrowth.<br />

The GFP-fluorescence observed (RFU) correlated with<br />

the agar bacterial counts (graph).<br />

The macroporosity and the condensed PTFE technology<br />

of Omyra ® <strong>Mesh</strong> represent critical mesh design features<br />

in the significant reduction of bacterial anchorage and<br />

growth.<br />

1 G. Voskerician, "Macroporosity and hydrophobicity of Surgical <strong>Mesh</strong>es reduce In Vivo Staphylococcus Aureus Infection and Anchorage",<br />

Presented in the International Hernia Congress, Berlin, September 2009.<br />

2 J. Jin et al, "Absence of microporosity reduced Staphylococcus Epidermidis colonization on cPTFE In Vitro", (Internal Manufacturer Publication).<br />

3 G. Voskerician et al, "Macroporous condensed poly(tetra fluoro-ethylene). II. In Vivo effect on adhesion formation and tissue integration",<br />

Journal of Biomedical Materials Research (2007); 82; 426-435.<br />

4 ® J. R. Eriksen et al, "Laparoscopic intraperitoneal mesh fixation with fibrin sealant (Tissel ) vs. titanium tacks: a randomised controlled experimental<br />

study in pigs", Hernia (2008); 12: 483-491.<br />

5 J. Jin, "A novel Light Weight Macroporous PTFE <strong>Mesh</strong> (Motif<strong>Mesh</strong>): In Vivo Effect on adhesion Formation and Tissue Integration" ,<br />

(Internal Manufacturer Publication).<br />

6 Voskerician et al, "Macroporous condensed poly(tetra fluoro-ethylene). I. In Vivo inflammatory response and healing characteristics",<br />

Journal of Biomedical Materials Research (2006); 76A; 232-242.<br />

5<br />

Omyra ® <strong>Mesh</strong>


Distributed by<br />

B. <strong>Braun</strong> Surgical SA | Carretera de Terrassa, 121 | 08191 Rubí | Spain<br />

Phone +34 93 5 86 62 00 | Fax +34 93 6 99 73 03 | www.bbraun.es<br />

Aesculap AG | Am Aesculap-Platz | 78532 Tuttlingen | Germany<br />

Phone +49 07461 95-0 | Fax +49 07461 95-26 00 | www.aesculap.com<br />

Aesculap – a B. <strong>Braun</strong> company<br />

All rights reserved. Technical alterations are<br />

possible. This leaflet may be used for no other<br />

purposes than offering, buying and selling of<br />

our products.<br />

No part may be copied or reproduced in any<br />

form. In the case of misuse we retain the rights<br />

to recall our catalogues and pricelists and to<br />

take legal actions.<br />

Brochure No. B18202 0410/1/2

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