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The modified assay thus developed is simple and quick, and covers a comparatively large sulfate concentration range (0 5 mM) compared to the standard turbidimetric assay.
The cooling capacity increased by 50.65% at the fin pitch 3.0 mm compared to 1.0 mm.
The 9-DOF method achieved a median PDE of 0.49 mm (compared to 2.53 mm for the 6-DOF method) and demonstrated robustness in the unconstrained imaging geometry.
Target registration error (TRE) was similarly improved for FFD+OC+IC (0.7 mm), compared to 1.4 and 1.8 mm for uFFD and Demons.
Average displacement of the center of rotation was 2.1 mm compared to 9.7 mm for the other systems combined.
The measureable range of the two-probe method is 105 mm compared to 36 mm using single probe.
Antibiotic sensitivity test (ABST) test showed that plasmid cured SCV strain displayed a larger zone of inhibition (16 mm) compared to wild type strain which displayed a relatively smaller zone of inhibition (10 mm) (Supplementary Fig. 3).
There was a general trend towards up-regulation of chondrogenic markers with increasing shear amplitudes which was significant at 1.5 mm compared to free swelling controls, while the expression of COL1A1 was down-regulated at this amplitude (Fig. 3d).
Moisture at 22% resulted in bigger-sized flakes with d50 between ∼1.3 and 1.8 mm, compared to ∼138 169 μm for ground corn.
Kinetic analyses established an improved substrate binding affinity in H132F mutant (Km: 0.027 ± 0.0028 mM) compared to wild-type (Km: 0.059 ± 0.0063 mM).
PVDF gave significantly greater collection efficiency (~30%) when using air channel widths of 2.25 mm compared to other tested widths (p<0.001).
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