By Anthony B. Brennan, Chelsea M. Kirschner
Bio-inspired techniques for biomedical engineering are on the vanguard of tissue engineering and regenerative medication. offering a finished evaluation of the newest advances and methods within the box, Bio-inspired fabrics for Biomedical Engineering demonstrates the dramatic medical breakthroughs which have been made in engineering all 4 of the foremost tissue varieties and modulating the immune procedure. Written by means of well known leaders within the fields of fabrics engineering, chemical engineering, mobile biology, and regenerative medication, this groundbreaking textual content offers scientists, professors, postdocs, and graduate scholars with the dramatic scientific breakthroughs concerning tissue engineering purposes.
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Additional resources for Bio-inspired Materials for Biomedical Engineering
P. ; cm. ” Includes bibliographical references and index. ISBN 978-1-118-36936-4 (cloth) – ISBN 978-1-118-84362-8 (ePDF) – ISBN 978-1-118-84343-7 (ePub) – ISBN 978-1-118-84342-0 (eMobi) – ISBN 978-1-118-84349-9 (oBK) I. , editor of compilation. II. , editor of compilation. III. Society for Biomaterials. [DNLM: 1. Biocompatible Materials. 2. Biomedical Engineering. 28–dc23 2013049566 Contributors Marta Alves da Silva, 3B's Research Group – Biomaterials, Biodegradables, and Biomimetics, University of Minho, Headquarters of the European Institute of Excellence on Tissue Engineering and Regenerative Medicine, Guimarães, Portugal; ICVS/3B's – PT Government Associate Laboratory, Braga/Guimarães, Portugal Michael Ansorge, Universität Leipzig, Institute of Biochemistry, Leipzig, Germany Ezgi Antmen, BIOMATEN, METU Center of Excellence in Biomaterials and Tissue Engineering, Department of Biotechnology, Ankara, Turkey Anthony Atala, Wake Forest Institute for Regenerative Medicine, Wake Forest School of Medicine, Winston-Salem, NC, USA Stephen F.
Scale bar in (B) is 50 μm. CIRC and LONG stand for circumferential and longitudinal axes, respectively. 4 The cardiac conduction system. (A) Representative action potentials for components of the conduction system in the chick heart illustrated in (B). The action potentials originating in the SA node undergo several transformations as they travel through the atria, the AV node, and finally the Purkinje fibers and the ventricles. Panels on the right show the Purkinje fibers (green) within the myocardium (red) at different locations in the ventricles.
H&E, hematoxylin and eosin. 1 Schematic showing tissue engineering tools for controlling hierarchical structure, comprising of scaffolding techniques, bioreactors and biomolecules, and cell source manipulations. 2 Hierarchical organization of the cardiovascular system in the human body. This chapter focuses on the tissue engineering of the myocardium and the tunica media [8,205,256,257]. 3 Schematic of making a master PDMS stamp with precise spatial cues using soft lithography. (Adapted from Kane et al.
Bio-inspired Materials for Biomedical Engineering by Anthony B. Brennan, Chelsea M. Kirschner