株式会社極東書店トップ商品一覧Electrospun Polymeric Nanofibers: Insight into Fabrication Techniques and Biomedical Applications. 2023 ed.

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Electrospun Polymeric Nanofibers: Insight into Fabrication Techniques and Biomedical Applications. 2023 ed.

Electrospun Polymeric Nanofibers: Insight into Fabrication Techniques and Biomedical Applications. 2023 ed.

・ISBN 978-3-031-31405-6 paper EUR 320.99

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お気に入り
著者・編者Jayakumar, R. (ed.),
シリーズ (Advances in Polymer Science)
出版社 (Springer International Publishing AG, SZ)
出版年月2024
ページ数468 pp.
言語ENG
ニュース番号<A03-44959>

解説

This volume deals with the various fabrication techniques, surface functionalization and biomedical applications of polymeric fibers possessing different scale and structure. It provides an overview of fabrication techniques such as Co-axial, Centrifugal, Melt and Yarning to procure multiscale, tubular and layered fibrous scaffold employed for biomedical applications. The chapters in this volume discusse the surface/chemical functionalization of fibers which enhance the biological properties of the fibrous scaffolds as well as the development of hybrid, layered and external stimuli-responsive fibrous scaffolds that hold potential application in biosensor and other biomedical fields. In addition, recent advances and applications of polymeric multiscale fibers in tissue engineering, regenerative medicine and drug delivery are presented. The potential use of fibrous scaffolds in bone, neural, tendon/ligament and cardiac tissue engineering, nanofibers as an antimicrobial wound dressing, employed in cancer theragnostics and in the treatment of skin/periodontal infections are discussed. The volume provides expert knowledge on the fabrication techniques, development of different scale and hybrid structure fibers, surface functionalization, layered and external stimuli responsive fibrous scaffolds. It will be beneficial to material/biomaterials scientists, bioengineering and biotechnologists by providing a better understanding on the subject of the innovative applications of fibrous scaffolds in drug delivery, tissue engineering, wound dressings and regenerative medicine.