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Meshes were assessed for their structural characteristics and mechanical properties, using uniaxial stiffness, permanent strain, bending rigidity and multi-axial burst strength methods.
The in vivo biocompatibility and foreign body reaction to electrospun meshes were assessed 4 weeks after subcutaneous implantation in mice.
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The biocompatibility of the undoped PLGA, PLGA + 30%PLA PGC188 (60 40), and PLGA + 30%PLA PGC13FF (60 40) meshes was assessed in C57BL/6 female mice (Jackson Laboratory, Bar Harbor, ME).
Four treatment nets (all comprising 152-mm polyamide PA mesh) were assessed that differed in their twine (conventional multifilament vs new multi-monofilament) and fishing configuration (conventional conical vs inverted shapes).
Importance of steel liner, reinforcement, prestressing process, temperature changes, nonlinearity of materials as well as density of finite elements mesh is assessed in the main stages of life cycle of the containment.
Women were assessed as having a mesh erosion if one was detected on examination or if the patient had undergone medical or surgical treatment for mesh erosion during the follow-up period.
Animals were placed in enclosures on an elevated wire mesh and responses to punctate mechanical stimulation were assessed using the esthesiometer.
Tactile and cold allodynia were assessed with the rats placed on a wire mesh floor beneath an inverted plastic cage.
In addition, PLA monofilament meshes have been assessed in vivo with an incisional hernia Wistar rat model used to simulate vaginal wall repair [ 26].
The performance of an anatomically designed femoral implant with porous titanium mesh coating was assessed in patients undergoing total hip arthroplasty.
Photoelectrocatalytic degradation of target molecules on nanotubular titanium dioxide (TiO2) immobilized on meshed conductive substrate was assessed by measuring the photoelectrochemical response (i.e., generated photocurrent) as indicator of TiO2 performance.
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