Quantitative Fluorescence Microscopy

Quantitative Fluorescence Microscopy PDF

Author: F. W. D. Rost

Publisher: Cambridge University Press

Published: 1991-07-26

Total Pages: 264

ISBN-13: 9780521394222

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Quantitative fluorescence microscopy is concerned with making measurements from fluorescent specimens in a fluorescence microscope, by measuring fluorescence emission from a defined area or areas of a specimen. This technique is most commonly used to determine the amount of some specific substance, such as DNA, in some particular area of a cell. But it has many other uses; for example, it can be used to identify certain substances in the cell by examining their fluorescence characteristics. This book is a complete guide to this technique for all biologists. It describes the principles and applications of quantitative fluorescence microscopy and also gives much practical information about the instrumentation required. There is also a discussion of the exciting developments in confocal fluorescence microscopy which allows the three dimensional distribution of particular substances to be determined. Everyone presently using this technique, or wishing to start using it will need to read this book.

Fluorescence Microscopy

Fluorescence Microscopy PDF

Author: B. Herman

Publisher: Taylor & Francis

Published: 2020-08-26

Total Pages: 185

ISBN-13: 1000102505

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This book covers the fundamental principles of fluorescence and their application to fluorescence microscopy, and presents applications to immunofluorescence, in situ hybridization, and photomicrography. It provides troubleshooting guidance to guide the user through commonly encountered problems.

Fluorescence Imaging Spectroscopy and Microscopy

Fluorescence Imaging Spectroscopy and Microscopy PDF

Author: X. F. Wang

Publisher: Wiley-Interscience

Published: 1996-04-25

Total Pages: 0

ISBN-13: 9780471015277

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In recent years, the introduction of the combined use of fluorescence spectroscopy and microscopy has opened up exciting new arenas of scientific investigation. The combination of spectroscopic techniques and video microscopy enables acquisition of quantitative data about dynamic processes. It allows the investigation of molecular activity as it occurs--at the level of a single, intact, living cell--and provides extraordinary detail regarding biological organization and function. This new work covers emerging technologies and their applications in a variety of disciplines, including chemistry, biology, physics, computer science, engineering, medicine, and pharmacology. These topics are presented by contributing authors who are leading--and pioneering--researchers in their fields. They offer a critical evaluation of both theoretical and practical aspects of the use of these combined technologies in a way that cuts across disciplines, promoting interactivity and dialogue among scientists in different fields. Each chapter is devoted to a new, unique, or otherwise novel application of the combination of imaging techniques and fluorescence spectroscopy. In addition to covering established methods and instrumentation, the contributors also identify potential new applications in a number of areas. Throughout, they emphasize the multifunctional and multidimensional uses of the marriage of fluorescence imaging spectroscopy and digital imaging microscopy. They show how these technologies can be used in combination to obtain distinct yet complementary information, allowing two- and three-dimensional measurements, as well as manipulations of the sample under study in real time. This book makes the field of fluorescence imaging spectroscopy and microscopy accessible to scientists in a variety of research fields. It is also an excellent text for graduate students, a reference to the latest techniques, and a source of ideas to stimulate future investigation. An exploration of ideas, methods, and applications in the exciting new area of fluorescence imaging spectroscopy and microscopy This book covers the latest in techniques and advances that have developed from the combined use of fluorescence imaging spectroscopy and video microscopy. A relatively new innovation, it has revolutionized molecular research in a wide range of disciplines. This approach allows acquisition of quantitative data regarding real-world biological processes--providing unprecedented insight into the physiology of living cells and their molecular structures and functions. Written by a diverse group of leading researchers who contribute from their respective scientific disciplines--and from their perspective at the cutting edge of the technology--this book * Combines a unified treatment and a critical evaluation of the field, presenting new ideas, methods, and instrumentation, with tips for developing new applications * Covers many new techniques in different scientific disciplines--from biology and chemistry to physics, engineering, and medicine * Emphasizes the multifunctional and the multidimensional uses of fluorescence spectroscopy and video microscopy, and shows how they can be applied in different combinations to obtain new information For biochemists, cell biologists, biophysicists, physiologists, neuroscientists, applied physicists, and materials scientists, as well as for scientists working in industrial, agricultural, medical, and pharmaceutical research--and for graduate students in these areas--this book is a novel resource of research opportunities, new ideas, and current practices in a dynamic and burgeoning new field.

Imaging Cellular and Molecular Biological Functions

Imaging Cellular and Molecular Biological Functions PDF

Author: Spencer L. Shorte

Publisher: Springer Science & Business Media

Published: 2007-09-12

Total Pages: 457

ISBN-13: 354071331X

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This book offers a comprehensive selection of essays by leading experts, which covers all aspects of modern imaging, from its application and up-scaling to its development. The chapter content ranges from the basics to the most complex overview of method and protocols. There is ample practical and detailed "how-to" content on important, but rarely addressed topics. This first edition features all-colour-plate chapters, licensed software and a unique, continuously updated website forum.

Fluorescence Imaging and Biological Quantification

Fluorescence Imaging and Biological Quantification PDF

Author: Raquel Seruca

Publisher: CRC Press

Published: 2018

Total Pages: 0

ISBN-13: 9781498737043

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Cover -- Half Title -- Title Page -- Copyright Page -- Dedication -- Table of Contents -- Preface -- Acknowledgments -- Editors -- Contributors -- Introduction -- SECTION I: ADVANCED METHODS OF ANALYSIS -- 1: Confocal microscopy in the life sciences -- 2: Imaging flow cytometry for quantification of cellular parameters -- 3: Live-cell imaging: Seeing is believing -- 4: Atomic force microscopy: A tool for imaging, manipulating biomolecules, and quantifying single-molecule interactions in biological systems -- 5: Confocal Raman microscopy: Imaging the chemistry -- 6: Tracking cancer: In vivo imaging techniques -- 7: Quantum dots: Concepts, imaging, and therapeutic applications in cancer -- 8: Selecting the appropriate in situ proximity ligation assay protocol -- 9: Cell detection and joint shape tracking using local image filters -- SECTION II: MOLECULAR AND CELLULAR APPLICATIONS -- 10: Studying subcellular signaling events in living microglial cells using fluorescence resonance energy transfer-based nanosensors -- 11: Membrane trafficking under the microscope, what new imaging technologies have brought to light -- 12: Illuminating the cycle of life -- 13: Methods for the visualization of circadian rhythms: From molecules to organisms -- 14: Measurement of lysosomal ion homeostasis by fluorescence microscopy -- 15: Capturing quantitative features of protein expression from in situ fluorescence microscopic images of cancer cell populations -- 16: Cancer cell invadopodia: Visualization and quantification tools -- Index

Far-Field Optical Nanoscopy

Far-Field Optical Nanoscopy PDF

Author: Philip Tinnefeld

Publisher: Springer

Published: 2015-02-07

Total Pages: 340

ISBN-13: 3662455471

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This book describes developments in the field of super-resolution fluorescence microscopy or nanoscopy. In 11 chapters, distinguished scientists and leaders in their respective fields describe different nanoscopy approaches, various labeling technologies, and concrete applications. The topics covered include the principles and applications of the most popular nanoscopy techniques STED and (f)PALM/STORM, along with advances brought about by fluorescent proteins and organic dyes optimized for fluorescence nanoscopy. Furthermore, the photophysics of fluorescent labels is addressed, specifically for improving their photoswitching capabilities. Important applications are also discussed, such as the tracking and counting of molecules to determine acting forces in cells, and quantitative cellular imaging, respectively, as well as the mapping of chemical reaction centers at the nano-scale. The 2014 Chemistry Nobel Prize® was awarded for the ground-breaking developments of super-resolved fluorescence microscopy. In this book, which was co-edited by one of the prize winners, readers will find the most recent developments in this field.

Fluorescence Applications in Biotechnology and Life Sciences

Fluorescence Applications in Biotechnology and Life Sciences PDF

Author: Ewa M. Goldys

Publisher: John Wiley & Sons

Published: 2009-08-24

Total Pages: 398

ISBN-13: 0470083700

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A self-contained treatment of the latest fluorescence applications in biotechnology and the life sciences This book focuses specifically on the present applications of fluorescence in molecular and cellular dynamics, biological/medical imaging, proteomics, genomics, and flow cytometry. It raises awareness of the latest scientific approaches and technologies that may help resolve problems relevant for the industry and the community in areas such as public health, food safety, and environmental monitoring. Following an introductory chapter on the basics of fluorescence, the book covers: labeling of cells with fluorescent dyes; genetically encoded fluorescent proteins; nanoparticle fluorescence probes; quantitative analysis of fluorescent images; spectral imaging and unmixing; correlation of light with electron microscopy; fluorescence resonance energy transfer and applications; monitoring molecular dynamics in live cells using fluorescence photo-bleaching; time-resolved fluorescence in microscopy; fluorescence correlation spectroscopy; flow cytometry; fluorescence in diagnostic imaging; fluorescence in clinical diagnoses; immunochemical detection of analytes by using fluorescence; membrane organization; and probing the kinetics of ion pumps via voltage-sensitive fluorescent dyes. With its multidisciplinary approach and excellent balance of research and diagnostic topics, this book is an essential resource for postgraduate students and a broad range of scientists and researchers in biology, physics, chemistry, biotechnology, bioengineering, and medicine.