Porous Polymeric Bioresorbable Scaffolds for Tissue Engineering

Nonfiction, Science & Nature, Technology, Textiles & Polymers, Material Science, Science
Cover of the book Porous Polymeric Bioresorbable Scaffolds for Tissue Engineering by Chiara Gualandi, Springer Berlin Heidelberg
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Chiara Gualandi ISBN: 9783642192722
Publisher: Springer Berlin Heidelberg Publication: April 7, 2011
Imprint: Springer Language: English
Author: Chiara Gualandi
ISBN: 9783642192722
Publisher: Springer Berlin Heidelberg
Publication: April 7, 2011
Imprint: Springer
Language: English

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.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

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.

More books from Springer Berlin Heidelberg

Cover of the book Child Soldier Victims of Genocidal Forcible Transfer by Chiara Gualandi
Cover of the book Endocrine Disruptors by Chiara Gualandi
Cover of the book Tobacco or Health? by Chiara Gualandi
Cover of the book Psychological Approach to the Rehabilitation of Coronary Patients by Chiara Gualandi
Cover of the book Hybrid Latex Particles by Chiara Gualandi
Cover of the book Biotechnology in China I by Chiara Gualandi
Cover of the book Integrität im Managementalltag by Chiara Gualandi
Cover of the book Techniques in Archaeological Geology by Chiara Gualandi
Cover of the book Chinese Economy in Disequilibrium by Chiara Gualandi
Cover of the book Eh-pH Diagrams for Geochemistry by Chiara Gualandi
Cover of the book Proceedings of the 2012 International Conference on Information Technology and Software Engineering by Chiara Gualandi
Cover of the book Pathogenesis and Treatment of Acne and Rosacea by Chiara Gualandi
Cover of the book Pocket Guide Beatmung by Chiara Gualandi
Cover of the book Handbook of Computational Statistics by Chiara Gualandi
Cover of the book Surgery of Skull Base Meningiomas by Chiara Gualandi
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy