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The combined data from ellipsometry and atomic force microscopy (AFM) analyses supports our findings.
Characterization of the hydrate phases by X-ray diffraction analyses supports this mechanism.
The association between SLC11A1 polymorphisms and tuberculosis susceptibility observed in our analyses supports the hypothesis that NRAMP1 might play an important role in the host defense to the development of tuberculosis.
Using purified hESC-CMs, our comprehensive, systems-based approach to transcriptional analyses supports the case that each of the stages of differentiation and selection results in a significant enrichment in cells of the cardiomyocyte lineage, expresses appropriate stage specific genes, and turns on appropriate biological processes corresponding to these stages.
The consistency of results between the base case and the two scenario analyses supports the robustness of the model.
The strength and consistency of the effect over several different analyses supports the validity of this finding.
However, the consistent finding of a positive association in all our analyses supports the robustness of our findings.
The similarity of these results, despite different statistical methods and independent analyses, supports the validity of the methods used in both studies.
Nonetheless, the fact that so many immune-related genes were identified by each of our independent analyses supports their biological and functional relevance to survival.
Wolfe (2001) pointed out that within a species, some loci may remain 'tetraploid', while others are diploidized; evidence from whole-genome analyses supports this idea [e.g., [ 36, 40]].
The fact that no species-specific clusters are detected in the phylogenetic analyses supports the idea that the isolates from human cases have arisen directly from the pool of H7N9 avian viruses that are circulating in each location.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com