stiffness-temperature model
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PURPOSE: Electrospun meshes may be considered as substitutes to textile polypropylene implants. We compared the host response and biomechanical properties of the rat abdominal wall following reinforcement with either polycaprolactone (PCL) modified with ureidopyrimidinone-motifs (UPy) or polypropylene mesh. METHODS: First we measured the response to cyclic uniaxial load within the physiological range both dry (room temperature) and wet (body temperature). 36 rats underwent primary repair of a full-thickness abdominal wall defect with a polypropylene suture (native tissue repair), or reinforced with either UPy-PCL or ultra-light weight polypropylene mesh (n = 12/group). Sacrifice was at 7 and 42 days. Outcomes were compliance of explants, mesh dimensions, graft related complications and semi-quantitative assessment of inflammatory cell (sub) types, neovascularization and remodeling. RESULTS: Dry UPy-PCL implants are less stiff than polypropylene, both are more compliant in wet conditions. Polypropylene loses stiffness on cyclic loading. Both implant types were well incorporated without clinically obvious degradation or herniation. Exposure rates were similar (n = 2/12) as well as mesh contraction. There was no reinforcement at low loads, while, at higher tension, polypropylene explants were much stiffer than UPy-PCL. The latter was initially weaker yet by 42 days it had a compliance similar to native abdominal wall. There were eventually more foreign body giant cells around UPy-PCL fibers yet the amount of M1 subtype macrophages was higher than in polypropylene explants. There were less neovascularization and collagen deposition. CONCLUSION: Abdominal wall reconstruction with electrospun UPy-PCL mesh does not compromise physiologic tissue biomechanical properties, yet provokes a vivid inflammatory reaction.
- MeSH
- biomechanika MeSH
- břišní stěna fyziologie MeSH
- chirurgické síťky * MeSH
- fascie fyziologie MeSH
- kosterní svaly fyziologie MeSH
- krysa rodu rattus MeSH
- polyestery MeSH
- potkani Sprague-Dawley MeSH
- pyrimidinony MeSH
- zvířata MeSH
- Check Tag
- krysa rodu rattus MeSH
- ženské pohlaví MeSH
- zvířata MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
... Conduction in the -- Clinical Domain 90 Variation among Different Nerve Segments 90 Effects of Temperature ... ... -- Phase Cancellations 288 Physiologic Temporal Dispersion 288 Pathologic Temporal Dispersion 289 Model ... ... Abnormalities of -- Neuromuscular Transmission 437 Postsynaptic Defect in Myasthenia Gravis 437 Experimental Models ... ... Methods and Technical Factors 450 Belly-Tendon Recording 450 Movement-Induced Artifacts 450 Temperature ... ... Stiff-Person Syndrome 906 -- 12. Dystonia and Botulinus Toxin -- Therapy 907 -- 13. ...
4th ed. xxix, 1146 s. : il., tab. ; 26 cm + 1 CD-ROM
- MeSH
- elektrodiagnostika metody MeSH
- elektromyografie MeSH
- nemoci míchy diagnóza MeSH
- nervové vedení fyziologie MeSH
- nervový přenos fyziologie MeSH
- neuromuskulární nemoci diagnóza MeSH
- Konspekt
- Patologie. Klinická medicína
- NLK Obory
- neurologie
- diagnostika
- NLK Publikační typ
- kolektivní monografie
... Circuit 134 -- Each Ion Channel Acts as a Conductor and Battery in Parallel 134 -- An Equivalent Circuit Model ... ... Perception of Touch and Proprioception 446 -- The Anterolateral System Mediates Sensations of Pain and Temperature ... ... Muscles 688 -- Muscle Force Is Required to Overcome Inertia 688 -- Muscle Force May Be Used to Create Stiffness ... ... Kandel, Susan Iversen -- Drive States Are Simple Cases of Motivational States That Can be Modeled as ... ... Servo-Control Systems 999 -- Temperature Regulation Involves Integration of Autonomic, Endocrine, and ...
4th ed. xxxiii, 1414 s. : il., tab., grafy ; 30 cm
- MeSH
- chování MeSH
- molekulární biologie MeSH
- nemoci nervového systému MeSH
- nervový systém MeSH
- neurochemie MeSH
- neurofyziologie MeSH
- neurony MeSH
- neurovědy MeSH
- Publikační typ
- monografie MeSH
- Konspekt
- Fyziologie člověka a srovnávací fyziologie
- NLK Obory
- neurovědy
- biologie