
pmid: 7942114
AbstractPhoton imaging is an increasingly important technique for the measurement and analysis of chemiluminescence and bioluminescence. New high‐performance low‐light level imaging systems have recently become available for the life science. These systems use advances in camera design and digital image processing and are now being used for a wide range of luminescence applications. They offer good sensitivity for photon detection and large dynamic range, and are suitable for quantitative analysis. This is achieved using a range of software techniques including image arithmetic, histogramming or summing regions of interest, feature extraction and multiple image processing for kinetics or assay screening. Improvements in imageprocessing hardware and software have increased the usefulness of these systems in the biosciences.Low‐light imaging is a rapid and non‐invasive method for the sensitive detection and analysis of luminescent assays. As such it offers a powerful and sensitive tool for investigating processes, both at the cellular level (luc and lux reporter genes, intracellular signalling) and for measurement of macro samples (immunoassays, gels and blots, tissue sections).
Bacteriological Techniques, Photons, Blotting, Western, Sensitivity and Specificity, Blotting, Southern, Genetic Techniques, Genes, Bacterial, Luminescent Measurements, Escherichia coli, Animals, Humans, Luciferases
Bacteriological Techniques, Photons, Blotting, Western, Sensitivity and Specificity, Blotting, Southern, Genetic Techniques, Genes, Bacterial, Luminescent Measurements, Escherichia coli, Animals, Humans, Luciferases
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