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Titlebook: Chlorophyll a Fluorescence in Aquatic Sciences: Methods and Applications; David J. Suggett,Ondrej Prášil,Michael A. Borowitz Book 2010 Spr

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Chlorophyll Fluorescence Terminology: An Introduction,fluorescence has increased. For the newcomer to . chlorophyll . (chl-.) fluorescence studies one of the most confusing aspects can be the large number of terms and notations used, many of which often refer to the same parameter. Several proposals to standardise fluorescence notation, most notably by
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Fluorescence as a Tool to Understand Changes in Photosynthetic Electron Flow Regulation,t describes the different electron pathways utilised by photosynthetic organisms, including pathways used in photosynthesis as well as alternative electron cycling (AEC). The major photoprotective processes are described, in particular, non-photochemical quenching (NPQ) and its three components, ene
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Microscopic Measurements of the Chlorophyll , Fluorescence Kinetics,ies of intra-population relationships among photosynthetic microorganism, studies of single algal cell metabolism and phytoplankton diversity. The technique can be also used for toxicity tests and to assess the physiological homogeneity of algal populations. On the other hand, the technique is highl
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Estimating Aquatic Productivity from Active Fluorescence Measurements,with ‘conventional’ gas exchange-based measurements. Fluorescence can be measured directly . and without the need to incubate discrete samples that have been removed from natural inherent environmental variability (Kolber and Falkowski 1993). Additionally, the high rate of data collection afforded b
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Flow Cytometry in Phytoplankton Research,mid-1980s. One indication of the impact of flow cytometry has been the appearance of special journal issues focused on applications in aquatic sciences (Cytometry, Yentsch and Horan 1989; Scientia Marina, Reckermann and Colijn 2000; Cytometry, Courties and Troussellier 2001). Since these publication
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