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The objectives of this study were to evaluate the current state of reporting and handling of effect modification in network meta-analyses (NMAs) and perform exploratory analyses to identify variables that are potentially associated with incomplete reporting of effect modifiers in NMAs.
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Since the additions and deletions of edges are basic modifications in network completion, we need to extend DPLSQ so that these operations can be performed at several time points.
We therefore addressed the issue from a different perspective and utilized well-documented connectivity and hierarchy of signaling networks in cells to see if modifications in network behavior could be more closely associated with phenotype than the simple expression of single genes.
Next, for each network realization, we checked whether the network contained contradictory modifications, e.g., one modification in the network blocked a reaction flux, whereas another modification allowed for the same reaction flux, or one modification added a metabolite to the biomass objective function, whereas another modification removed it.
Despite end-to-end signalling, the Host based autonomous Mobile Address Translation scheme ensures minimum service disruption and distinctly allows global mobility of the mobile node without requiring any modification in the network.
By demonstrating that nasal flow rate induced modifications in bulbar network activity, M/T single cell activity and spike phase locking to LFP, we have presented novel evidence showing that nasal airflow is a key parameter to consider when studying olfactory coding.
Structural and functional modifications in this network may be the biological substrate of the pervasive effect of meditation practice in everyday life.
Mutational modification in gene regulation networks alters gene expression dynamics that provide a basis for morphogenetic diversity.
How to detect the modification is a hot topic in network coding theory.
Canonical and functional overlays include protein modification and glucose metabolism as in network I, but they also include signaling and neuronal functions.
Besides network modification in PFC, it has also been demonstrated that PFC neurons show long-lasting Ca2+ transients that depend on the D1 receptor pathway.
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