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Using satellite tracking data and Maximum entropy modeling, we studied habitat selection of two declining waterfowl species, the Greater White-fronted Goose (Anser Albifrons) and the Tundra Bean Goose (A. serrirostris), at three spatial scales: landscape (30, 40, 50 km), foraging (10, 15, 20 km) and roosting (1, 3, 5 km).
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Using an in vitro model we studied mast cells and C. albicans interactions using different approaches to qualitatively and quantitatively access this interplay.
With this model, we studied the effect of report particle characteristics on LFAs, including binding site density, target analyte and report particle concentration.
Based on comparative molecular dynamics simulations using explicit and implicit solvent models, we studied the dynamic properties of both protein and water.
Using these models we studied kinetic characteristics of plastocyanin-photosystem 1 and ferredoxin-photosystem 1 complex formation at a variety of ionic strength values.
Using the extended numerical model, we studied the mechanical responses of the 10-walled MWCNT with varying inter-wall bridge densities under torsion, bending, and uniaxial compression.
Using this model, we studied classical OR protocols like ExOR and examined the cause of duplicate packet transmissions.
Using a validated model we studied the effects that body weight, metabolic rate and ethanol dose had on the time lag between the blood alcohol concentration and transdermal alcohol concentration.
However, in an ischemic and reperfused porcine model, we studied the PS externalisation in the myocardium after reperfusion using 99mTc-lactadherin (RH Poulsen et al., unpublished work).
Using aged rats as a model we studied how aging affects neural processing in somatosensory cortex.
In the second cell model, we studied murine cells with a homozygous gene-trap mutation disrupting the LEDGF/p75 locus [42].
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com