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The combination of directed evolution with high resolution structural studies and detailed characterization of dynamics promises to provide insights into the molecular basis of stability and catalysis.
The model is able to simulate glacier evolution with high accuracy.
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Instead they rely on level-set-based surface evolution with high-order smoothness terms such as Gaussian/mean curvature to overcome noises, which may create surfaces that maybe too smooth to represent finer geometry details of the original object.
The D. pseudoobscura – D. persimilis pair, as was seen previously (Grath and Parsch 2012), shows evidence of faster-X evolution, with higher KA/ KS for X-linked genes (pooling A X genes with the X X genes, median X-linked KA/ KS = 0.144 vs. median autosomal KA/ KS = 0.111, P = 3.87; for KA the medians were X-linked = 0.00385 vs. autosomal = 0.00300, P = 1.21 × 10−).
The clinical course of severe acute pancreatitis (SAP) may be complicated by a variety of organ failures, an ominous evolution associated with high mortality rates.
The Bayesian analysis of character evolution suggested with high posterior probability that the most recent common ancestor of the genus Trochulus most likely possessed hairs and lived in a moist habitat.
This severity was confirmed in the first 24 h of evolution, with a high APACHE II score (median 25) and high organ dysfunction measured with the SOFA score (mean 9.6, median 10).
Because pathogenic phenotypes do not resemble ancestral phenotypes, the molecular nature of the high rate of irreversibility in proteins is best explained by evolution with a high prevalence of compensatory, epistatic interactions between amino acid sites.
The best-fitting model of chromosome number evolution with a high likelihood score suggests that the Vellinae core showing x = 17 chromosomes arose by duplication events from a recent x = 8 ancestor.
Best-fitting model of chromosome number evolution with a high likelihood score suggests that the Vellinae core showing x = 17 chromosomes arose by duplication events from a recent x = 8 ancestor shared by C. annua.
These evolutions, combined with High Speed Machining (HSM) process of forging die lead to important increase in time for machining preparation.
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