Národní úložiště šedé literatury Nalezeno 2 záznamů.  Hledání trvalo 0.01 vteřin. 
Technology of monofilamentous fibers based on oxidized hyaluronic acid
Běťák, Jiří ; Mráček, Aleš (oponent) ; Burgert, Ladislav (oponent) ; Klučáková, Martina (vedoucí práce)
Following dissertation thesis discusses on the technological development of novel type of fully biodegradable fibers based on oxidized hyaluronic acid. The thesis describes main aspects of the technological unit operations that are essential for the right understanding and management of the entire multistep fiber-forming process. The thesis also mentions a design of main technological devices that were used within the laboratory development to gain the basic process knowledge and also the design of the further fiber-spinning production unit that was built in 2015. The thesis further discusses ways of potential chemical modification of fibers in order to increase their stability in wet environment. Regarding the targeted applications of discussed fibers within the internal surgical applications, the material biocompatibility or toxicity has been also evaluated.
Technology of monofilamentous fibers based on oxidized hyaluronic acid
Běťák, Jiří ; Mráček, Aleš (oponent) ; Burgert, Ladislav (oponent) ; Klučáková, Martina (vedoucí práce)
Following dissertation thesis discusses on the technological development of novel type of fully biodegradable fibers based on oxidized hyaluronic acid. The thesis describes main aspects of the technological unit operations that are essential for the right understanding and management of the entire multistep fiber-forming process. The thesis also mentions a design of main technological devices that were used within the laboratory development to gain the basic process knowledge and also the design of the further fiber-spinning production unit that was built in 2015. The thesis further discusses ways of potential chemical modification of fibers in order to increase their stability in wet environment. Regarding the targeted applications of discussed fibers within the internal surgical applications, the material biocompatibility or toxicity has been also evaluated.

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