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The SAF values for the spheres are determined assuming a homogeneous distribution within the sphere using the Monte Carlo simulation program MCNP6.0 [32].
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Statistical comparison with exact values for the penetrable sphere model shows that this interpolation scheme provides accurate estimates of S3 off the grid points; better than ±0.02% accuracy is typical for a quadratic interpolation scheme.
Calculated values for the inner-sphere [UO2(OH2)4]2+-H2complex2O) complex are in disagreement with the observed 13C chemical shifts by 4 to 6 ppm (Table 2).
The ARS method produced the highest recovery values for all spheres; the gain was dependent on the insert size and ranged from 200 % for small inserts to 35%% for the largest inserts when compared to A method.
The contrast recovery values for the two largest spheres filled with non-radioactive water only ("non-radioactive spheres") (Table 1) show higher values when compared to the results reported in the literature for the Biograph mMR system [2].
Specifically, the activity quantification values for the four "radioactive spheres" were lower than activity values reported in the literature for NEMA IQ measurements on the Biograph mMR system [2].
From the two sets of 3D space points, corresponding to the left and right images, two values for the radius of the sphere are computed based on a least square minimization approach (Section 5.2).
This value coincides with published values for the collapse of polyNIPAM spheres in ethanol/water mixtures determined by DLS [23].
On the other hand, the contrast recovery values for the two "non-radioactive spheres" show higher values when compared to the values reported in the literature [2].
In the MC simulations four different couples of values for the volume V′ of the sphere and for the absorption μ af of the fluorophore at the excitation wavelength were considered (for each case we have V′ μ af = 0.01 mm): V′ = 10 mm, μ af = 0.001 mm−1; V′ = 100 mm, μ af = 0.0001 mm−1; V′ = 500 mm, μ af = 0.00002 mm−1, and V′ = 1000 mm, μ af = 0.00001 mm−1.
To determine the values for the anterior best-fit sphere (BFS) and posterior BFS in an Asian population using the Orbscan II (Bausch & Lomb) slit-scanning Placido disk corneal topographer.
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