Buch, Englisch, 317 Seiten, Format (B × H): 160 mm x 241 mm, Gewicht: 731 g
Buch, Englisch, 317 Seiten, Format (B × H): 160 mm x 241 mm, Gewicht: 731 g
Reihe: Biologically-Inspired Systems
ISBN: 978-3-030-41527-3
Verlag: Springer
Basic laws of nature are rather simple, but observed biological structures and their dynamic behaviors are unbelievably complicated. This book is devoted to a study of this “strange” relationship by applying mathematical modeling to various structures and phenomena in biology, such as surface patterns, bioadhesion, locomotion, predator-prey behavior, seed dispersal, etc. and revealing a kind of
self-organization
in these phenomena. In spite of diversity of biological systems considered, two main questions are (1) what does self-organization in biology mean mathematically and (2) how one can apply this knowledge to generate new knowledge about behavior of particular biological system? We believe that this kind of “biomimetics” in computer will lead to better understanding of biological phenomena and possibly towards development of technical implications based on our modeling.
Zielgruppe
Research
Autoren/Hrsg.
Fachgebiete
- Naturwissenschaften Biowissenschaften Biowissenschaften
- Interdisziplinäres Wissenschaften Wissenschaften: Forschung und Information Kybernetik, Systemtheorie, Komplexe Systeme
- Naturwissenschaften Biowissenschaften Botanik
- Naturwissenschaften Physik Thermodynamik Oberflächen- und Grenzflächenphysik, Dünne Schichten
- Mathematik | Informatik Mathematik Mathematik Interdisziplinär Systemtheorie
- Naturwissenschaften Biowissenschaften Tierkunde / Zoologie
- Naturwissenschaften Biowissenschaften Angewandte Biologie Bioinformatik
Weitere Infos & Material
Chapter 1. Introduction.- Chapter 2. Various methods of pattern formation.- Chapter 3. Clusterization of biological structures with high aspect ratio.- Chapter 4. Contact between biological attachment devices and rough.- Chapter 5. Anisotropic friction in biological systems.- Chapter 6. Mechanical interlocking of biological fasteners.- Chapter 7. Biomechanics at the microscale.- Chapter 8. Nanoscale pattern formation in biological surfaces.- Chapter 9. Ecology and evolution.




