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Biophysical Regulation of Vascular Differentiation and Assembly (Biological and Medical Physics, Biomedical Engineering) ePub download

by Sharon Gerecht

  • Author: Sharon Gerecht
  • ISBN: 1441978348
  • ISBN13: 978-1441978349
  • ePub: 1162 kb | FB2: 1688 kb
  • Language: English
  • Category: Engineering
  • Publisher: Springer; 2011 edition (January 10, 2011)
  • Pages: 254
  • Rating: 4.8/5
  • Votes: 773
  • Format: azw rtf lit mobi
Biophysical Regulation of Vascular Differentiation and Assembly (Biological and Medical Physics, Biomedical Engineering) ePub download

This book will be of interest to biologists, biophysicists and engineers who work with vascular differentiation and assembly. Series: Biological and Medical Physics, Biomedical Engineering.

This book will be of interest to biologists, biophysicists and engineers who work with vascular differentiation and assembly. Hardcover: 254 pages.

Biological and Medical Physics, Biomedical Engineering. This book will be of interest to biologists, biophysicists and engineers who work with vascular differentiation and assembly. Biophysical Regulation of Vascular Differentiation and Assembly. Introduces emerging approaches of biophysics for vascular regeneration. Show all. Table of contents (10 chapters). The Emergence of Blood and Blood Vessels in the Embryo and Its Relevance to Postnatal Biology and Disease.

Dr. Gerecht is an elected Fellow of the American Institute for Medical and Biological Engineering (2016)

This book will be of interest to biologists, biophysicists and engineers who work with vascular differentiation and assembly. About the authors. Dr. Gerecht is an elected Fellow of the American Institute for Medical and Biological Engineering (2016). She is the author of more than 150 papers, book chapters, and patents in her field.

Radiation Physics for Medical Physicists (Biological and Medical Physics, Biomedical Engineering). This book Radiation Physics. 88 MB·1,072 Downloads·New! of radiation physics, it covers prerequisite knowledge for medical physics courses on the graduate. Physics of the Human Body (Biological and Medical Physics, Biomedical Engineering). 63 MB·556 Downloads·New!

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Sharon Gerecht Microenvironmental Regulation of Tumor Angiogenesis Biological and .

Because of their ability to differentiate and develop into functional vasculature, stem cells hold tremendous promise for therapeutic applications. Microenvironmental Regulation of Tumor Angiogenesis Biological and Engineering Considerations. 203. Effects of Hemodynamic Forces on the Vascular Differentiation of Stem Cells Implications for Vascular Graft Engineering.

This book assembles the works and views of experts from various disciplines to provide a unique perspective on. .

This book assembles the works and views of experts from various disciplines to provide a unique perspective on how different aspects of its microenvironment regulate the differentiation and assembly of the vasculature. In particular, it describes recent efforts to exploit modern engineering techniques to study and manipulate various biophysical cues.

Автор: Sharon Gerecht Название: Biophysical Regulation of Vascular Differentiation and Assembly . This book shows how microenvironmental factors regulate the differentiation and assembly of stem cells that develop into functional vasculature.

This book shows how microenvironmental factors regulate the differentiation and assembly of stem cells that develop into functional vasculature.

Series: Biological and Medical Physics, Biomedical Engineering.

This book updates and expands on various aspects of the vasculature’s microenvironment and how these regulate differentiation and assembly.

Because of their ability to differentiate and develop into functional vasculature, stem cells hold tremendous promise for therapeutic applications. However, the scientific understanding and the ability to engineer these cellular systems is still in its early stages, and must advance significantly for the therapeutic potential of stem cells to be realized. Stem cell differentiation and function are exquisitely tuned by their microenvironment. This book will provide a unique perspective of how different aspect of the vasculature microenvironment regulates differentiation and assembly. Recent efforts to exploits modern engineering techniques to study and manipulate various biophysical cues will be described including: oxygen tension during adult and embryonic vasculogenesis (Semenza and Zandstra), extracellular matrix during tube morphogenesis and angiogenesis (Wirtz, Davis, Ingber), surface topography and modification (Chen and Gerecht), shear stress and cyclic strain effect on vascular assembly and maturation (Vunjak-Novakovic and Niklason), and three dimensional space for angio-andvasculogensis (Ferreria and Fischbach).

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