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Exact(1)
Concurrent reversion rate between two given mutations was calculated as the rate of simultaneous reversion of these 2 mutations between 2 consecutive timepoints (Equation 1).
Similar(59)
Permutation tests were used to test for differences in errors per hemisegment between two given mutation types.
We visualize several branching blends between two given cylinders.
Obviously, after enough time passes since the moment when two sequences begun to diverge, all traces of over-random similarity between them are lost, and D reaches its asymptotic value E, given by (1) where X i is the equilibrium value of x i under given mutation and selection.
When the mixture was between two different mutations, both mutations were considered and reported.
While 35/38 patients had between zero and three somatic mutations, three patients had more than three mutations.
Seventeen (81%) had a single mutation and the remainder had between two and four mutations each.
In the comparison above, this was not taken into account, but we would expect that overlap between motif pairs and correlated mutation pairs would be 'consistent' in the sense that the two motifs that constitute a motif pair each overlap with one of the two positions of a given correlated mutation pair.
Two constraints are given between two submeshes for task migration.
The combination of three such mutations gave rise to the mutant M3 (W174C/A404V/L441F).
Targeting of more than one epitope will likely be needed, given the mutation rate of HIV.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com