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Thus, in the modelling framework of Boolean networks it is expected that the observed data states are mostly the attractor states of a model network.
We therefore expected that the observed reduction of NRG1 type III levels in vivo should result in hypomyelination (thinner myelin) during development (Michailov et al., 2004).
It could be expected that the observed chemical differences might lead to different biological activities.
We use an identical structure model for all stations, because the stations used in the inversion are located on almost hard rock, so it is expected that the observed seismograms are less affected by local site effects in the long-period range.
Theoretical Green's functions were computed for simple layers and were referred to the Jeffreys-Bullen model, using Kikuchi and Kanamori's (1991) method for all stations; this is due to the fact that it is generally expected that the observed seismograms are less affected by local site effects in the teleseismic range.
Thus, it is consequently expected that the observed FM charts have more detail.
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Thus, in recently diverged lineages it is expected that the paraphyly observed in mitochondrial DNA should would also be reflected in the nuclear data [ 30], as is observed for C. natalensis/C.
It is expected that the sensitivities observed with plasmid dilutions may not be achievable for some clinical samples because of low virus copy numbers or genomic differences which affect primer performance.
Since the amino acid substitutions in this position in S-RNases and RNase Dre1 homologs are the same, it is expected that the changes observed in RNase Dre1 homologs also reduce, but not eliminate, the specific activity of these enzymes.
Consequently, we would expect that, as observed, varying the ATP concentration will vary the rate in a hyperbolic manner but that the same energetic barrier (that for the kf step) will exist at all concentrations.
Note that because adaptation occurs very rapidly (e.g. can begin in less than 100 ms in the visual system) and plateaus within approximately 1 s [13], we expected that adaptation would be observed in the form of an overall reduction of the BOLD signal in the 0° relative to the 90° and 180° conditions throughout the entire movement-block time course.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com