
Single Biomolecule Detection and Analysis
Concepts, Applications, and Future Prospects
- 408 pages
- English
- ePUB (mobile friendly)
- Available on iOS & Android
Single Biomolecule Detection and Analysis
Concepts, Applications, and Future Prospects
About this book
This collection discusses various micro/nanodevice design and fabrication for single-biomolecules detection. It will be an ideal reference text for graduate students and professionals in diverse subject areas including materials science, biomedical engineering, chemical engineering, mechanical engineering, and nanoscience.
This book-
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- Discusses techniques of single-biomolecule detection, their advantages, limitations, and applications.
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- Covers comprehensively several electrochemical detection techniques.
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- Provides single-molecule separation, sensing, imaging, sequencing, and analysis in detail.
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- Examines different types of cantilever-based biomolecule sensing, and its limitations.
Single Biomolecule Detection and Analysis covers single-biomolecule detection and characterization using micro/nanotechnologies and micro/nanofluidic devices, electrical and magnetic detection technologies, microscopy and spectroscopy techniques, single biomolecule optical, and nanopore devices. The text covers key important biosensors-based detection, stochastic optical reconstruction microscopy-based detection, electrochemical detection, metabolic engineering of animal cells, single-molecule intracellular delivery and tracking, terahertz spectroscopy-based detection, total internal reflection fluorescence (TIFR) detection, and Fluorescence Correlation Spectroscopy (FCS) detection. The text will be useful for graduate students and professionals in diverse subject areas including materials science, biomedical engineering, chemical engineering, mechanical engineering, and nanoscience. Discussing chemical process, physical process, separation, sensing, imaging, sequencing, and analysis of single-molecule detection, this text will be useful for graduate students and professionals in diverse subject areas including materials science, biomedical engineering, chemical engineering, mechanical engineering, and nanoscience. It covers microscopy and spectroscopy techniques for single-biomolecule detection, analysis, and their biomedical engineering applications.
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Information
Table of contents
- Cover
- Half Title
- Title Page
- Copyright Page
- Table of Contents
- Acknowledgements
- Preface
- Editors
- List of Contributors
- Chapter 1 Microfluidics-Based DNA Detection
- Chapter 2 Single-Molecule Detection by Solid-State Nanopores
- Chapter 3 Confocal Microscope-Based Detection
- Chapter 4 Flow Cytometry-Based Detection
- Chapter 5 Single-Molecule Separation
- Chapter 6 Single-Molecule and Single-Particle Tracking and Analysis in a Living Cell
- Chapter 7 Determining the Location and Movement of Biomolecules and Biomolecular Complexes in Single Microbial Cells
- Chapter 8 Pull Down Assay-Based Protein Analysis
- Chapter 9 Atomic Force Microscopy for Single Molecule Detection and Analysis
- Chapter 10 SERS Analysis for Single-Molecule Detection of Disease Biomarkers
- Chapter 11 Single Molecule Imaging Using State-of-the-Art Microscopy Techniques
- Index