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Generally, the TARCs were slightly overestimated for all of the spheres, but the estimated sphere activities typically remained within approximately 10% of the reference value (defined by the syringe activity measured in an activity meter and the sphere volumes).
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In this study, we defined the activity recovery coefficient (ARC) as the ratio between the estimated and reference sphere activities.
Ultra-small-angle X-ray scattering (USAXS) of the nickel nanoparticles in Ni-graphene polyimide nanocomposites were estimated by a sphere model with bimodal size distribution.
The xenograft, kidney and liver volumes of interest were drawn according to the PET/CT images and average background activity was estimated from a sphere with a volume of ca. 0.5 cm3 between the shoulder regions.
The origin of the coordinate system is the center of the sphere, estimated as the point most equidistant from all data points (more formally, we find a point minimizing the variance of distances between its position and those of the data points).
Next, we propose a method for estimating the spheres on which source signals exist by using ICA solution and the near-field model.
They are huge gas spheres estimated to have 5 to 15 times the mass of Jupiter, the solar system's largest planet.
The specific capacity of the carbon spheres estimated from galvanostatic experiment at 0.2 A g−1 is 59 F/g.
Taking into account the blood volumes of infants (85 ml/kg) and adults (65 ml/kg) and the serum half-life of soluble NKG2D ligands of 6 days [ 59], the tumor mass required to account for the plasma levels of soluble NKG2DLs in patients can be estimated to tumor spheres with a diameter of 5.9 - 17.8 mm and 10.9 - 32.7 mm, respectively.
Accordingly, the area of sensitivity is estimated to be a sphere with diameter twice the electrode surface diameter, i.e. a 200-μm-diameter electrode has ∼400-μm-diameter sphere of sensitivity (see also Thompson et al., 2003).
The surface area of the DCU was estimated by assuming a sphere shape particle and a true density (d) of 1.3 cm3/gm.
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