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3.1.2 AFM Cantilevers and Tips
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Ewelina Lorenc
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Chapters in this book
- Frontmatter I
- Preface V
- Acknowledgment VII
- Table of Contents Volume 1 – Biomedical Methods IX
- Table of Contents of Volume 2 – Biomedical Applications XI
- Contributing Authors XV
- 1 Introduction 1
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Soft Matter Mechanics
- 2.1 Introduction to Viscoelasticity 7
- 2.2 Contact Mechanics 21
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Instruments and Methods
- 3.1 Atomic Force Microscope AFM 65
- 3.1.1 AFM Instrumentation 69
- 3.1.2 AFM Cantilevers and Tips 87
- 3.1.3 AFM Calibration Issues 105
- 3.2 Fiber-Optics-Based Nanoindenters 129
- 3.3 Optical Tweezers and Force Spectrum Microscopy 147
- 3.4 Magnetic Tweezers: From Molecules to Cells 167
- 3.5 Cell and Tissue Stretcher 187
- 3.6 Microrheology 199
- 3.7 Fluidic Approaches to Measure Cellular Deformability 217
- 3.8 Progresses in Correlative Microscopy and Techniques for AFM in Biomechanics 239
- Subject Index (Volume 1 & Volume 2) 259
Chapters in this book
- Frontmatter I
- Preface V
- Acknowledgment VII
- Table of Contents Volume 1 – Biomedical Methods IX
- Table of Contents of Volume 2 – Biomedical Applications XI
- Contributing Authors XV
- 1 Introduction 1
-
Soft Matter Mechanics
- 2.1 Introduction to Viscoelasticity 7
- 2.2 Contact Mechanics 21
-
Instruments and Methods
- 3.1 Atomic Force Microscope AFM 65
- 3.1.1 AFM Instrumentation 69
- 3.1.2 AFM Cantilevers and Tips 87
- 3.1.3 AFM Calibration Issues 105
- 3.2 Fiber-Optics-Based Nanoindenters 129
- 3.3 Optical Tweezers and Force Spectrum Microscopy 147
- 3.4 Magnetic Tweezers: From Molecules to Cells 167
- 3.5 Cell and Tissue Stretcher 187
- 3.6 Microrheology 199
- 3.7 Fluidic Approaches to Measure Cellular Deformability 217
- 3.8 Progresses in Correlative Microscopy and Techniques for AFM in Biomechanics 239
- Subject Index (Volume 1 & Volume 2) 259