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            Chapter Urban Gardening: From Cost Avoidance to Profit Making — Example from Ljubljana, Slovenia

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            Author(s)
            Glavan, Matjaž
            Černič Istenič, Majda
            Cvejić, Rozalija
            Language
            English
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            Abstract
            Non-thermal plasma technology is one of those techniques that suffer relatively little from diffusion limits, slow kinetics, and complex geometries compared to more traditional liquid-based chemical surface modification techniques. Combined with a lack of solvents, preservation of the bulk properties, and fast treatment times; it is a well-liked technique for the treatment of materials for biomedical applications. In this book chapter, a review will be given on what the scientific community determined to be essential to obtain appropriate scaffolds for tissue engineering and how plasma scientists have used non-thermal plasma technology to accomplish this. A distinction will be made depending on the scaffold fabrication technique, as each technique has its own set of specific problems that need to be tackled. Fabrication techniques will include traditional fabrication methods, rapid prototyping, and electrospinning. As for the different plasma techniques, both plasma activation and grafting/polymerization will be included in the review and linked to the in-vitro/in-vivo response to these treatments. The literature review itself is preceded by a more general overview on cell communication, giving useful insights on how surface modification strategies should be developed.
            URI
            https://doab-dev.siscern.org/handle/20.500.12854/181170
            Keywords
            Non-thermal plasma technology, surface modification, tissue engineering, scaffold fabrication, biomaterials
            DOI
            10.5772/62301
            Publisher
            InTechOpen
            Publication date and place
            2016
            Classification
            Physical chemistry
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              This project received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No 871069.

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