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Michael Kühl

Researcher at University of Copenhagen

Publications -  376
Citations -  18595

Michael Kühl is an academic researcher from University of Copenhagen. The author has contributed to research in topics: Medicine & Internal medicine. The author has an hindex of 70, co-authored 302 publications receiving 16167 citations. Previous affiliations of Michael Kühl include University of Sydney & Aarhus University.

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Fluorescent pigments in corals are photoprotective

TL;DR: It is reported that in excessive sunlight FPs are photoprotective; they achieve this by dissipating excess energy at wavelengths of low photosynthetic activity, as well as by reflecting of visible and infrared light by FP-containing chromatophores.
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The in vivo biofilm

TL;DR: Why the current in vitro models of biofilms might be limited for describing infectious biofilmms are discussed, and new strategies for improving this discrepancy are suggested.
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Microenvironment and photosynthesis of zooxanthellae in scleractinian corals studied with microsensors for O2, pH and light

TL;DR: In this article, the authors showed that coral respiration in light was calculated as the difference between the measured gross and net photosynthesis, and was found to be >6 times higher at a saturating irradiance of 350 pEm m 2 s 1 than the dark respiration measured under identical hydrodynamic conditions (flow rate of 5 to 6 cm ssl).
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Spatial patterns and links between microbial community composition and function in cyanobacterial mats

TL;DR: It is demonstrated that the spatial variability in the photosynthetic capacity and light acclimation of benthic phototrophic microbial communities is at least as large on a sub-millimeter scale as it is on a global scale, and suggests that this pattern of variability scaling is similar for the microbial community composition.
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Fiber‐optic oxygen microsensors, a new tool in aquatic biology

TL;DR: Oxygen profiles in marine sediments obtained from measurements with microoptrodes show good correlation to profiles measured with oxygen microelectrodes, and show excellent long-term stability and storage stability.