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The current analysis using different preference weights provided a range of utility estimates (overall and characteristic-specific) for future detailed QALY-related cost-effectiveness evaluations.
The provision of the S. lemnae macronuclear genome sets the stage for future detailed experimental studies of chromatin-mediated, RNA-guided developmental genome rearrangements.
More importantly, these could be considered an important starting point for future detailed molecular studies of the interaction between PAR and MFP.
In fact, in several species pairs with almost fully overlapping ranges, the currently available evidence would favor sympatric or parapatric species formation, and we flag them for future detailed study.
These have been made in order to demonstrate the applicability of the gamma imaging technique to radionuclide transport in a GDF and, as such, provide the basis for future detailed experimentation.
Although several studies have discussed the glycolysis-PPP complex pathway relationship in metabolites and transcripts [ 71, 72], there is a need for future detailed multi-level (transcript-protein-metabolite) study of these two pathways in plants.
Their identification in Synechocystis 6803, a cyanobacterial model organism with a well-studied physiology and genetics, is advantageous for their future detailed characterization.
Refining the result of this approximation by exploring the potential of applying an appropriately adapted sediment transport model coupled with hydrodynamic simulations (e.g. Tritthart et al., 2011) is envisaged for a future detailed study.
Our study has, overall, created new knowledge about types of cystatin and cysteine protease transcribed, timing of coordinated transcription of the two components of the system and inhibitory activity of actively transcribed and non-transcribed cystatins in nodules for more future detailed interaction studies.
Although the O. trifallax MAC genome has recently been published (Swart et al. 2013), there is also considerable interest in obtaining a draft S. lemnae MAC genome, both for comparative purposes and to facilitate future detailed experimental studies using Stylonychia as a model organism.
Importantly, we performed Affymetrix chip microarray analysis and for the first time demonstrated more than 4300 genes significantly up- and down-regulated, and >160 genes that are >2-fold down or up-regulated (p < 0.05) in FAKsiRNA#1 and #2 samples group compared to control group that provides basis for future mechanistic detail study of FAKsiRNA-directed gene expression in breast cancer cells.
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