Computational Modeling in Tissue Engineering
Our rough guess is there are 110,500 words in this book.
At a pace averaging 250 words per minute, this book will take 7 hours and 22 minutes to read. With a half hour per day, this will take 15 days to read.
How long will it take you?
This book will take an estimated to read at a reading speed averaging words per minute. With 30 minutes per day, this will take to read.
Enter your reading speedYou can take one of our WPM reading speed tests to find your reading speed.
Create a free account to track your reading progress, build your reading list, and set reading goals.
Author
Contributions
- SpringerLink (Online service) - Contributor
Publication
2013 - Imprint: Springer, Berlin, Heidelberg, Germany
Language
English
Word Count
110,500 words, Guess
Page Count
442 pages
Physical Format
Electronic resource
Identifiers
- Internet Archivecomputationalmod00geri
- ISBN-139783642325632
- ISBN-103642325637
- Better World Books9783642325632
- Open LibraryOL27025892M
Classifications
- DDC610.28
- LCCR856-857
Description
<p>One of the major challenges in tissue engineering is the translation of biological knowledge on complex cell and tissue behavior into a predictive and robust engineering process. Mastering this complexity is an essential step towards clinical applications of tissue engineering. This volume discusses computational modeling tools that allow studying the biological complexity in a more quantitative way. More specifically, computational tools can help in: </p><p> (i) quantifying and optimizing the tissue engineering product, e.g. by adapting scaffold design to optimize micro-environmental signals or by adapting selection criteria to improve homogeneity of the selected cell population;</p><p>(ii) quantifying and optimizing the tissue engineering process, e.g. by adapting bioreactor design to improve quality and quantity of the final product; and </p><p>(iii) assessing the influence of the in vivo environment on the behavior of the tissue engineering product, e.g.^ by investigating vascular ingrowth.</p><p><p>The book presents examples of each of the above mentioned areas of computational modeling. The underlying tissue engineering applications will vary from blood vessels over trachea to cartilage and bone. For the chapters describing examples of the first two areas, the main focus is on (the optimization of) mechanical signals, mass transport and fluid flow encountered by the cells in scaffolds and bioreactors as well as on the optimization of the cell population itself. In the chapters describing modeling contributions in the third area, the focus will shift towards the biology, the complex interactions between biology and the micro-environmental signals and the ways in which modeling might be able to assist in investigating and mastering this complexity.^ The chapters cover issues related to (multiscale/multiphysics) model building, training and validation, but also discuss recent advances in scientific computing techniques that are needed to implement these models as well as new tools that can be used to experimentally validate the computational results. </p>
Subjects
Series Statement
- Studies in Mechanobiology, Tissue Engineering and Biomaterials -- 10
Other Editions
- Computational Modeling in Tissue Engineering
Reader Reviews
No reviews yet for this book.
Be the first to share your thoughts!