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Fluorescence Microscopy of Living Cells in Culture, Part A
Annotation On preparation, delivery, and detection of fluorescent probes. Discusses factors which determine the destination of probes and methods for delivering them to specific sites in living cells. Includes issues related to sample physiology (microscopic cell culture), optics (basic fluorescence microscopy), and signal detection (electric photometry and imaging, immunoelectron microscopic detection of fluorophores). Annotation copyrighted by Book News, Inc., Portland, OR.
Fluorescence Microscopy of Living Cells in Culture, Part B
Parts A and B, companion volumes on fluorescence microscopy, are sourcebooks of methods for living cells. Part A comprehensively covers methodology: fluorescent analogs, procedures for fluorescent labeling of various cellular structures, and fluorescence microscopy. Part B describes instrumentation and quantitation analysis for imaging and spectroscopy. Key Features * Convenient bench-top format Comprehensive methods inluded for: * Tracing proteins, peptides, hormones, and toxins * Labeling cell surfaces, mitochondria, endoplasmic reticulum, and endocytic compartments * Preparation of fluorescent probes and their incorporation into cells * Culturing cells under the microscope * Basic fluorescence microscopy and imaging techniques
In the last decade, fluorescence microscopy has evolved from a classical “retrospective” microscopy approach into an advanced imaging technique that allows the observation of cellular activities in living cells with increased resolution and dimensions. A bright new future has arrived as the nano era has placed a whole new array of tools in the hands of biophysicists who are keen to go deeper into the intricacies of how biological systems work. Following an introduction to the complex world of optical microscopy, this book covers topics such as the concept of white confocal, nonlinear optical microscopy, fluctuation spectroscopies, site-specific labeling of proteins in living cells, imaging molecular physiology using nanosensors, measuring molecular dynamics, muscle braking and stem cell differentiation.
Fluorescence methods play a leading role in the investigation of biological objects. They are the only non-destructive methods for investigating living cells and microorganisms in vivo. Using intrinsic and artificial fluorescence methods provides deep insight into mechanisms underlying physiological and biochemical processes. This book covers a wide range of modern methods involved in experimental biology. It illustrates the use of fluorescence microscopy and spectroscopy, confocal laser scanning microscopy, flow cytometry, delayed fluorescence, pulse-amplitude-modulation fluorometry, and fluorescent dye staining protocols. This book provides an overview of practical and theoretical aspects of fluorescence methods and their successful application in the investigation of static and dynamic processes in living cells and microorganisms.
Fluorescence Microscopy is a precise and widely employed technique in many research and clinical areas nowadays. Fluorescence Microscopy In Life Sciences introduces readers to both the fundamentals and the applications of fluorescence microscopy in the biomedical field as well as biological research. Readers will learn about physical and chemical mechanisms giving rise to the phenomenon of luminescence and fluorescence in a comprehensive way. Also, the different processes that modulate fluorescence efficiency and fluorescence features are explored and explained.