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These analyses are performed based in several bioinformatics tools, which allow a wide characterization of a given protein.
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Since a change in gene expression is the most immediate reply of muscle to physiological stimuli, this approach allows a wide phenotypic characterization of fiber types.
This allows a wide range of real-time applications.
DNA microarray technology allows a wide survey of gene expression.
However, photometry does at least allow a qualitative characterization of a redshift.
Variations in the mobility of individual RNA segments allow a genetic characterization of RV strains.
Only experimental characterization, possibly guided by computational predictions, will allow a better characterization of the Mimivirus and other genomes.
Several methods allow a thermo-physical characterization of this material.
Over the past decade, the use of vector-sensor array (VSA) technology for source localization has significantly increased allowing a better characterization of the recorded phenomena in a wide range of applications (e.g., acoustics, electromagnetism, radar, sonar, geophysics, etc).
This allows a detailed characterization of the local nature of the modelled data.
This allows a detailed characterization of individual protein superfamilies as well as high-throughput functional classifications.
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