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Using a metagenomics approach, we characterized the ammonia-oxidizing microbiological community of biofilters in a commercial recirculating marine aquaculture system producing hybrid grouper (Epinephelus lanceolatus × E. fuscoguttatus).
Using a metagenomics approach, we characterized the AOB community on the biofilters of a marine aquaculture facility producing hybrid grouper and uncovered a diversity of both described and undescribed species.
Using this approach, we characterized the taxonomic distribution of variation in the RIP-like processes among basidiomycetes.
In this first approach, we characterized the effect of leptin on NE-mediated melatonin synthesis in cultured rat pineal glands.
Using this approach we characterized all MRI regions in the triple human-chimp-macaque alignments using the human sequence for calculating nucleotide composition and MRI features.
Using this approach, we characterized a novel lncRNA, LUADT1, because its network included multiple protein-coding genes associated with tumor growth, invasion or prognosis.
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To demonstrate the approach, we characterize the robust features of a variety of quantum many-body models.
In our approach we characterize the structure of the contents stored in the applications' models with suitable domain-specific languages.
To demonstrate this approach, we characterize and compare community variations in population exposure to lahar hazards for five active volcanoes in the State of Washington (USA).
In this work, using one year of METOP-AVHRR data and a geostatistical approach, we characterize the spatial anisotropy and non-stationarity of the SST variability using oriented ellipsoids.
Here, using a comparative transcriptomic approach, we characterize shared patterns of response to Bd across divergent sympatric amphibian species and highlight key differences in immune pathway activation that likely underlie variation in susceptibility or resistance to chytridiomycosis.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com