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The increase was interpreted in terms of soft segment—hard segment phase mixing, due to the increased hard fraction (DMPA) and increased cohesion of PU ((f)), whereas the decrease was interpreted in terms of increased phase separation (Mpre) and increased hard segment cohesion (DN).
This decrease was interpreted as a recovery of alveolar epithelium and decreased amount of septal edema, which in turn led to fibrosis.
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This decrease is interpreted as a decrease in the number of genes that have a common error threshold value.
Similarly, using the FRET methodology, an observed very rapid FRET decrease phase was interpreted to represent this shift in equilibrium toward the post-translocation state induced by nucleotide binding.
A decrease in this ratio was interpreted as decrease of Δψm, whereas an increase in this ratio was interpreted as gain in Δψm.
NA tendency to decrease after a peak was interpreted as a consequence of progressive stretching of interstitial septa with creation of false connections between adjacent air spaces (false derecruitment).
A decrease in this ratio was interpreted as loss of Δ ψm, whereas an increase was interpreted as gain in Δ ψm.
Interestingly, a recent study showed that HIF-1 tightly regulates the expression of the COX4-1 and COX4-2 subunits and of the LON mitochondrial protease, in such a way that conditions stabilizing HIF-1 lead to a decreased COX activity, which was interpreted by the authors as an optimization of respiration efficiency in hypoxia [26].
Conversely, a 2-point decrease on the ADL scale was interpreted as an improvement in functional status.
A reduction in RV afterload was associated with an apparently paradoxical decrease in RV contractility, which was interpreted as being the result of an indirect mechanism ('homeometric autoregulation') caused by the immediate adaptation of RV contractility to match a drug-induced reduction in RV afterload.
Measurements of the axial temperature profiles evidenced a high sensitivity of the steady state thermal behavior of the reactor on catalyst activity: a decrease of the intrinsic catalytic activity was interpreted as the cause of a progressive over-heating of the bed which, in turn, moderated the loss of methane conversion and syngas productivity.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com