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Porous Polymeric Bioresorbable Scaffolds for Tissue Engineering
Details
This book examines the manipulation of polymer chemical structure and composition to tune scaffold physical properties and optimization of scaffold 3D architecture by a smart use of both fabrication techniques.
The development and application of bioactive nano-structured constructs for tissue regeneration is the focus of the research summarised in this thesis. Moreover, a particular focus is the rational use of supercritical carbon dioxide foaming and electrospinning technologies which can lead to innovative polymeric bioresorbable scaffolds made of hydrolysable (both commercial and 'ad-hoc' synthesized) polyesters. Mainly, the author discusses the manipulation of polymer chemical structure and composition to tune scaffold physical properties, and optimization of scaffold 3D architecture by a smart use of both fabrication techniques. The multidisciplinary nature of this research is imperative in pursuing the challenge of tissue regeneration successfully. One of the strengths of this thesis is the integration of knowledge from chemistry, physics, engineering, materials science and biomedical science which has contributed to setting up new national and international collaborations, while strengthening existing ones.
Nominated by the University of Bologna for a Springer Theses Prize. This research integrates aspects of chemistry, physics, engineering, materials science and biomedical science. This work documents successful international and national collaborations which have been set up as a result of this research. Includes supplementary material: sn.pub/extras
Inhalt
Introduction.- Materials and Methods.- Results and Discussion.- Conclusions.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783642267826
- Auflage 2011
- Sprache Englisch
- Genre Maschinenbau
- Lesemotiv Verstehen
- Anzahl Seiten 136
- Größe H235mm x B155mm x T8mm
- Jahr 2013
- EAN 9783642267826
- Format Kartonierter Einband
- ISBN 3642267823
- Veröffentlichung 29.05.2013
- Titel Porous Polymeric Bioresorbable Scaffolds for Tissue Engineering
- Autor Chiara Gualandi
- Untertitel Springer Theses
- Gewicht 219g
- Herausgeber Springer Berlin Heidelberg