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Cellular automata based models have proven capable of providing several new insights into the dynamics of the immune system (IS) response.
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Sparsity-based models have proven to be very effective in most image processing applications.
Genome-scale constraint-based models have proven to be very powerful tools for metabolic engineering, because they provide global, integrated views of metabolism, allowing both discovery and assessment of possible manipulations [ 11, 12, 17, 22].
Again, these business models have proven successful and have been modeled by others.
Primate models have proven invaluable to investigate prion diseases.
Among the most successful VHF vaccine candidates are recombinant, replication-competent vesicular stomatitis virus (VSV based vectors, which in animal models have proven highly effective in preventing lethal disease after challenge with a variety of high-consequence viral pathogens, including, but not limited to, EBOV, MARV, and LASV, as well as Andes (ANDV) and Nipah viruses (2 – 5 ).
SAPS II models have proved to be competitive to the SOFA (Sequential Organ Failure Assessment) based score models [[3]].
SAPS II models have proved to be competitive to the SOFA (Sequential Organ Failure Assessment) based score models [[ 3]].
These models have proved more enduring than the sea creatures.
Mathematical models have proved to be indispensable in this regard.
However, the establishment of a reliable human cell-line based BBB model has proven to be difficult [ 17].
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