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This book provides an overview of single-cell isolation,
separation, injection, lysis and dynamics analysis as well as a
study of their heterogeneity using different miniaturized devices.
As an important part of single-cell analysis, different techniques
including electroporation, microinjection, optical trapping,
optoporation, rapid electrokinetic patterning and optoelectronic
tweezers are described in detail. It presents different fluidic
systems (e.g. continuous micro/nano-fluidic devices, microfluidic
cytometry) and their integration with sensor technology, optical
and hydrodynamic stretchers etc., and demonstrates the applications
of single-cell analysis in systems biology, proteomics, genomics,
epigenomics, cancer transcriptomics, metabolomics, biomedicine and
drug delivery systems. It also discusses the future challenges for
single-cell analysis, including the advantages and limitations.
This book is enjoyable reading material while at the same time
providing essential information to scientists in academia and
professionals in industry working on different aspects of
single-cell analysis. Dr. Fan-Gang Tseng is a Distinguished
Professor of Engineering and System Science at the National Tsing
Hua University, Taiwan. Dr. Tuhin Subhra Santra is a Research
Associate at the California Nano Systems Institute, University of
California at Los Angeles, USA.
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- Discusses techniques of single-biomolecule detection, their
advantages, limitations, and applications. Covers comprehensively
several electrochemical detection techniques. Provides
single-molecule separation, sensing, imaging, sequencing, and
analysis in detail. 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.
This book provides an overview of single-cell isolation,
separation, injection, lysis and dynamics analysis as well as a
study of their heterogeneity using different miniaturized devices.
As an important part of single-cell analysis, different techniques
including electroporation, microinjection, optical trapping,
optoporation, rapid electrokinetic patterning and optoelectronic
tweezers are described in detail. It presents different fluidic
systems (e.g. continuous micro/nano-fluidic devices, microfluidic
cytometry) and their integration with sensor technology, optical
and hydrodynamic stretchers etc., and demonstrates the applications
of single-cell analysis in systems biology, proteomics, genomics,
epigenomics, cancer transcriptomics, metabolomics, biomedicine and
drug delivery systems. It also discusses the future challenges for
single-cell analysis, including the advantages and limitations.
This book is enjoyable reading material while at the same time
providing essential information to scientists in academia and
professionals in industry working on different aspects of
single-cell analysis. Dr. Fan-Gang Tseng is a Distinguished
Professor of Engineering and System Science at the National Tsing
Hua University, Taiwan. Dr. Tuhin Subhra Santra is a Research
Associate at the California Nano Systems Institute, University of
California at Los Angeles, USA.
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