Porous Polymeric Bioresorbable Scaffolds for Tissue Engineering
Chiara Gualandi
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Description for Porous Polymeric Bioresorbable Scaffolds for Tissue Engineering
Paperback. 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. Series: Springer Theses. Num Pages: 136 pages, biography. BIC Classification: MQW; PNNP; TGM. Category: (P) Professional & Vocational. Dimension: 235 x 155 x 8. Weight in Grams: 219.
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 ... Read more
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 ... Read more
Product Details
Format
Paperback
Publication date
2013
Publisher
Springer-Verlag Berlin and Heidelberg GmbH & Co. KG Germany
Number of pages
136
Condition
New
Series
Springer Theses
Number of Pages
124
Place of Publication
Berlin, Germany
ISBN
9783642267826
SKU
V9783642267826
Shipping Time
Usually ships in 15 to 20 working days
Ref
99-15
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