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The world of nano-biomechanics = mec...
~
Afrin, R.
The world of nano-biomechanics = mechanical imaging and measurement by atomic force microscopy /
紀錄類型:
書目-語言資料,印刷品 : 單行本
正題名/作者:
The world of nano-biomechanics/ by Atsushi Ikai ; with contributions of R. Afrin ... [et al.].
其他題名:
mechanical imaging and measurement by atomic force microscopy /
作者:
Ikai, Atsushi.
其他作者:
Afrin, R.
出版者:
Amsterdam ;Elsevier, : 2008.,
面頁冊數:
xvi, 283 p. :ill. :
標題:
Biomechanics - methods. -
電子資源:
An electronic book accessible through the World Wide Web; click for information
ISBN:
9780444527776
The world of nano-biomechanics = mechanical imaging and measurement by atomic force microscopy /
Ikai, Atsushi.
The world of nano-biomechanics
mechanical imaging and measurement by atomic force microscopy /[electronic resource] :by Atsushi Ikai ; with contributions of R. Afrin ... [et al.]. - 1st ed. - Amsterdam ;Elsevier,2008. - xvi, 283 p. :ill.
Includes bibliographical references and index.
Preface -- Chapter 1. Force in Biology -- Chapter 2. Introduction to Basic Mechanics -- Chapter 3. Force and Force Measurement Apparatuses -- Chapter 4. Polymer Chain Mechanics -- Chapter 5. Interaction Forces -- Chapter 6. Single Molecule Interaction Forces -- Chapter 7. Single Molecule DNA and RNA Mechanics -- Chapter 8. Single Molecule Protein Mechanics -- Chapter 9. Motion in Nano-biology -- Chapter 10. Cell Mechanics -- Chapter 11. Manipulation at the Molecular Level -- Chapter 12. Finite Element Analysis of Microscopic Biological Structures -- Chapter 13. Appendices.
By using nanotechnological methods, we can now poke around protein molecules, genes, membranes, cells and more. Observation of such entities through optical and electron microscopes tempt us to touch and manipulate them. It is now possible to do so, and scientists around the world have started pulling, pushing and cutting small structures at the base of life processes to understand the effect of our hand work. The book describes the physical properties of such life supporting structures from the molecular level with a special emphasis on their designs based on the mechanical strength and flexibility, membrane and other biological nanostructures. - Describes the basic mechanical features of proteins, DNA, cell membrane and other biological nanostructures - Explains the basic concepts and mathematics of elementary mechanics needed to understand and perform experimental work.
Electronic reproduction.
Amsterdam :
Elsevier Science & Technology,
2008.
Mode of access: World Wide Web.
ISBN: 9780444527776
Source: 133775:133901Elsevier Science & Technologyhttp://www.sciencedirect.comSubjects--Topical Terms:
542290
Biomechanics
--methods.Index Terms--Genre/Form:
498447
Electronic books.
LC Class. No.: QH513 / .I33 2008eb
Dewey Class. No.: 571.43
National Library of Medicine Call No.: 2008 D-325
The world of nano-biomechanics = mechanical imaging and measurement by atomic force microscopy /
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Preface -- Chapter 1. Force in Biology -- Chapter 2. Introduction to Basic Mechanics -- Chapter 3. Force and Force Measurement Apparatuses -- Chapter 4. Polymer Chain Mechanics -- Chapter 5. Interaction Forces -- Chapter 6. Single Molecule Interaction Forces -- Chapter 7. Single Molecule DNA and RNA Mechanics -- Chapter 8. Single Molecule Protein Mechanics -- Chapter 9. Motion in Nano-biology -- Chapter 10. Cell Mechanics -- Chapter 11. Manipulation at the Molecular Level -- Chapter 12. Finite Element Analysis of Microscopic Biological Structures -- Chapter 13. Appendices.
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By using nanotechnological methods, we can now poke around protein molecules, genes, membranes, cells and more. Observation of such entities through optical and electron microscopes tempt us to touch and manipulate them. It is now possible to do so, and scientists around the world have started pulling, pushing and cutting small structures at the base of life processes to understand the effect of our hand work. The book describes the physical properties of such life supporting structures from the molecular level with a special emphasis on their designs based on the mechanical strength and flexibility, membrane and other biological nanostructures. - Describes the basic mechanical features of proteins, DNA, cell membrane and other biological nanostructures - Explains the basic concepts and mathematics of elementary mechanics needed to understand and perform experimental work.
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