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Several modules can then be tiled to form larger area detectors.
Modules can then be reused on different machines with different operating systems.
As shown in this study, those modules can then be tested experimentally to further investigate and refine the function of the miRNA in the regulatory network.
The new modules can then vary independently of each other, possibly increasing the system's "evolvability", its potential for morphological variation and evolution.
Modules can then be identified dynamically based on the measured data.
These modules can then be used by other software applications to create resource description framework (RDF) data compliant with these OWL models.
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The module can then be extracted and saved in a local RNA motifs repository with the 'Create RNA Motif' panel.
As a simplification, the output of one module can then be considered as the input to the next module (Fig. 2A) 2A.
Genes can be linked if they are regulated by the same microRNAs, and a double-layer module can then be formed by linking microRNAs that regulate the same gene.
Once you've arranged modules, you can then map controllers to various macros.
WGCNA clusters together highly correlated genes into modules, which can then be used to assess a variety of attributes (see [ 58] and references within for full details).
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