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Individual variants present at <10 % allele fraction or in regions with <50X coverage were flagged for manual review and evaluated/interpreted by the reviewing laboratory scientists and molecular pathologists based on a variety of factors, including, but not limited to, overall tumor percentage, read depth, complexity of alteration, and evidence for associated copy number alterations.
SCDW, which measures the areas where at least 50% of the cartilage depth is affected by any type of degenerative change, showed the increased depth of cartilage alterations throughout time, being significant only at week 6 for the 500 U dose, when 42 ± 5% of its width was affected (P <0.05).
The depth of plasma induced alteration was strongly influenced by the power input and size of the treated batch, i.e. dropping the power or increasing the batch size resulted in reduced plasma penetration and therefore shallower modification.
The depth of the thermal alteration was on average 4 mm larger using the newly tested instrument.
The depth of the thermal alteration was on average 4 mm larger in group A using the newly tested instrument; dispersion of values was 12 17 mm.
Variations from the reference genome are identified and annotated, and by capitalizing on sequencing depth of coverage between samples, alterations to the normal diploid genomic state can be identified and changes in copy number recognized (reviewed in [ 12]).
The experimental results revealed significant variation in the hardness value along the depth of the coatings for the alteration of processing conditions, which mainly occurred due to discrepancy in the dilution of substrate material and consequent change in the percentage of hard TiC and TiB2 phases.
Once a stable state was reached, any variations in the monitored parameters (change in the amplitude/frequency of EEG waves or EKG frequency, fall or fluctuation in the intersystolic interval, and change in end-tidal CO2) commensurate with a change in the depth of anesthesia were compensated for by alterations in the level of isofluorane.
All basalts below 1020 m show signs of alteration that become more significant with depth.
Owing to the importance of kinases in cell signaling, we decided to employ the MRM-based method to conduct an in-depth profiling of the alteration of global kinome in human cells in response to sodium arsenite exposure.
The depths of advanced argillic alteration, sericite, and potassic zones are 0 to ~2, ~1.5 to ~2, and >2 km, respectively.
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