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The entire brain was analyzed and volumetric rendering technology was utilized, which enabled us to visualize the functional organization of intrinsic brain activity as volumetric source imaging.
The structural comparison between WT1 and Y122F implied that the swing of Glu144 might be induced by ligand binding, thus enabled us to visualize the conformational change coupled with substrate binding in cADO active site for the first time.
The remarkable sensitivity, selectivity, and photostability of F482 enabled us to visualize basal ONOO− in immune-stimulated phagocyte cells and quantify its generation in phagosomes by high-throughput flow cytometry analysis.
In contrast the elucidation of the structure of nSCARB2 (pH 7.5) at higher resolution (3.0 Å) and its comparison with aSCARB2 enabled us to visualize a pivotal conformational change in SCARB2 induced by pH that has implications for the function of the receptor.
Correlation network analysis enabled us to visualize the association with metabolic profiles, such that networks for HM fruits comprised highly connected nodes, such as antioxidant activities, citric acid, γ-aminobutyric acid, and ascorbic acid; however, in MC fruits, most connective nodes were fruit weight, glutamic acid, and glucose.
This enabled us to visualize very long fluorescently labeled IFs by TIRFM.
Similar(42)
In contrast to radiographic methods, positron emission tomography using the radiotracer [18F]-fluoride (Fluoride-PET) enables us to visualize the viability of bone in the remaining part of the head, despite the presence of the covering metal component.
This mapping approach enables us to visualize how salience and valence positions change at critical times.
These enable us to visualize the tsunami generation process, including the velocity field.
They enable us to visualize the charge distributions of molecules and charge-related properties of molecules.
No methods were available enabling us to visualize the subcellular niche of the stratum corneum that CMS accumulate in.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com